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2 %% Created for Charles Vardeman at 2007-10-11 14:52:41 -0400
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5 %% Saved with string encoding Western (ASCII)
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7
8
9 @article{Medasani:2007uq,
10 Abstract = {We employ first-principles and empirical computational methods to study the surface energy and surface stress of silver nanoparticles. The structures, cohesive energies, and lattice contractions of spherical Ag nanoclusters in the size range 0.5-5.5 nm are analyzed using two different theoretical approaches: an ab initio density functional pseudopotential technique combined with the generalized gradient approximation and the embedded atom method. The surface energies and stresses obtained via the embedded atom method are found to be in good agreement with those predicted by the gradient-corrected ab initio density functional formalism. We estimate the surface energy of Ag nanoclusters to be in the range of 1.0-2.2 J/m(2). Our values are close to the bulk surface energy of silver, but are significantly lower than the recently reported value of 7.2 J/m(2) for free Ag nanoparticles derived from the Kelvin equation.},
11 Author = {Medasani, Bharat and Park, Young Ho and Vasiliev, Igor},
12 Date-Added = {2007-10-11 14:39:46 -0400},
13 Date-Modified = {2007-10-11 14:40:50 -0400},
14 Doi = {ARTN 235436},
15 Journal = {Physical Review B},
16 Local-Url = {file://localhost/Users/charles/Documents/Papers/PhysRevB_75_235436.pdf},
17 Title = {Theoretical study of the surface energy, stress, and lattice contraction of silver nanoparticles},
18 Volume = {75},
19 Year = {2007}}
20
21 @article{Wang:2005qy,
22 Abstract = {The surface structures of cubo-octahedral Pt-Mo nanoparticles have been investigated using the Monte Carlo method and modified embedded atom method potentials that we developed for Pt-Mo alloys. The cubo-octahedral Pt-Mo nanoparticles are constructed with disordered fcc configurations, with sizes from 2.5 to 5.0 nm, and with Pt concentrations from 60 to 90 atom \%. The equilibrium Pt-Mo nanoparticle configurations were generated through Monte Carlo simulations allowing both atomic displacements and element exchanges at 600 K. We predict that the Pt atoms weakly segregate to the surfaces of such nanoparticles. The Pt concentrations in the surface are calculated to be 5-14 atom \% higher than the Pt concentrations of the nanoparticles. Moreover, the Pt atoms preferentially segregate to the facet sites of the surface, while the Pt and Mo atoms tend to alternate along the edges and vertexes of these nanoparticles. We found that decreasing the size or increasing the Pt concentration leads to higher Pt concentrations but fewer Pt-Mo pairs in the Pt-Mo nanoparticle surfaces.},
23 Author = {Wang, GF and Van Hove, MA and Ross, PN and Baskes, MI},
24 Date-Added = {2007-10-11 14:37:12 -0400},
25 Date-Modified = {2007-10-11 14:37:14 -0400},
26 Doi = {DOI 10.1021/jp050116n},
27 Journal = {Journal of Physical Chemistry B},
28 Pages = {11683-11692},
29 Title = {Surface structures of cubo-octahedral Pt-Mo catalyst nanoparticles from Monte Carlo simulations},
30 Volume = {109},
31 Year = {2005}}
32
33 @article{Chui:2003fk,
34 Abstract = {Molecular dynamics simulations of a platinum nanocluster consisting 250 atoms were performed at different temperatures between 70 K and 298 K. The semi-empirical, many-body Sutton-Chen (SC) potential was used to model the interatomic interaction in the metallic system. Regions of core or bulk-like atoms and surface atoms can be defined from analyses of structures, atomic coordination, and the local density function of atoms as defined in the SC potential. The core atoms in the nanoparticle behave as bulk-like metal atoms with a predominant face centered cubic (fcc) packing. The interface between surface atoms and core atoms is marked by a peak in the local density function and corresponds to near surface atoms. The near surface atoms and surface atoms prefer a hexagonal closed packing (hcp). The temperature and size effects on structures of the nanoparticle and the dynamics of the surface region and the core region are discussed.},
35 Author = {Chui, YH and Chan, KY},
36 Date-Added = {2007-10-11 14:34:06 -0400},
37 Date-Modified = {2007-10-11 14:34:09 -0400},
38 Doi = {DOI 10.1039/b302122j},
39 Journal = {Physical Chemistry Chemical Physics},
40 Pages = {2869-2874},
41 Title = {Analyses of surface and core atoms in a platinum nanoparticle},
42 Volume = {5},
43 Year = {2003}}
44
45 @article{Sankaranarayanan:2005lr,
46 Abstract = {Bimetallic nanoclusters are of interest because of their utility in catalysis and sensors, The thermal characteristics of bimetallic Pt-Pd nanoclusters of different sizes and compositions were investigated through molecular dynamics simulations using quantum Sutton-Chen (QSC) many-body potentials, Monte Carlo simulations employing the bond order simulation model were used to generate minimum energy configurations, which were utilized as the starting point for molecular dynamics simulations. The calculated initial configurations of the Pt-Pd system consisted of surface segregated Pd atoms and a Pt-rich core, Melting characteristics were studied by following the changes in potential energy and heat capacity as functions of temperature, Structural changes accompanying the thermal evolution were studied by the bond order parameter method. The Pt-Pd clusters exhibited a two-stage melting: surface melting of the external Pd atoms followed by homogeneous melting of the Pt core. These transitions were found to depend on the composition and size of the nanocluster. Melting temperatures of the nanoclusters were found to be much lower than those of bulk Pt and Pd. Bulk melting temperatures of Pd and Pt simulated using periodic boundary conditions compare well with experimental values, thus providing justification for the use of QSC potentials in these simulations. Deformation parameters were calculated to characterize the structural evolution resulting from diffusion of Pd and Pt atoms, The results indicate that in Pd-Pt clusters, Pd atoms prefer to remain at the surface even after melting. In addition, Pt also tends to diffuse to the surface after melting due to reduction of its surface energy with temperature. This mixing pattern is different from those reported in some of the earlier Studies on melting of bimetallics.},
47 Author = {Sankaranarayanan, SKRS and Bhethanabotla, VR and Joseph, B},
48 Date-Added = {2007-10-11 14:32:02 -0400},
49 Date-Modified = {2007-10-11 14:32:04 -0400},
50 Doi = {ARTN 195415},
51 Journal = {Physical Review B},
52 Title = {Molecular dynamics simulation study of the melting of Pd-Pt nanoclusters},
53 Volume = {71},
54 Year = {2005}}
55
56 @article{Hu:2004lr,
57 Author = {Hu, M. and Petrova, H. and Hartland, G. V.},
58 Date = {JUN 21},
59 Date-Added = {2007-10-11 13:34:04 -0400},
60 Date-Modified = {2007-10-11 13:34:04 -0400},
61 Isi = {ISI:000222228000005},
62 Issn = {0009-2614},
63 Journal = {CHEMICAL PHYSICS LETTERS},
64 Month = {Jun},
65 Number = {4-6},
66 Pages = {220--225},
67 Publication-Type = {J},
68 Title = {Investigation of the properties of gold nanoparticles in aqueous solution at extremely high lattice temperatures},
69 Volume = {391},
70 Year = {2004}}
71
72 @article{Mafune01,
73 Author = {Mafune, F. and Kohno, J. and Takeda, Y. and Kondow, T.},
74 Date = {SEP 27},
75 Date-Added = {2007-10-11 13:29:38 -0400},
76 Date-Modified = {2007-10-11 13:29:38 -0400},
77 Isi = {ISI:000171214200005},
78 Issn = {1089-5647},
79 Journal = {JOURNAL OF PHYSICAL CHEMISTRY B},
80 Month = {Sep},
81 Number = {38},
82 Pages = {9050--9056},
83 Publication-Type = {J},
84 Title = {Dissociation and aggregation of gold nanoparticles under laser irradiation},
85 Volume = {105},
86 Year = {2001}}
87
88 @article{JACKSON:1991lr,
89 Abstract = {The glass-transition temperatures, T(g), of organic liquids confined to small pores were studied by differential scanning calorimetry (DSC). The T(g) was measured as a function of pore size in controlled pore glasses (CPG) having pore diameters in the range of 40-730 angstrom. The surface of the glass was treated with hexamethyldisilazane to promote wetting by the organic liquids studied (o-terphenyl and benzyl alcohol). Glasses formed in the pores had a lower T(g) than in the bulk and the reduction in T(g) increased as the pore size decreased. For example, the depression of the glass transition temperature, DELTA-T(g), of benzyl alcohol in 40 angstrom and 85 angstrom pores was 7.2 K and 3.1 K, respectively. The magnitude of DELTA-T(g) also depends on the material; e.g. for o-terphenyl in the 85 angstrom pores, DELTA-T(g) was 8.8 K versus 3.1 K for benzyl alcohol. In general, it was noted that DELTA-T(g) was considerably less than for the depression of the crystalline melting point, DELTA-T(m), studied in related work. For example, for benzyl alcohol in the 85 angstrom pores, DELTA-T(m) was approximately 25 K and DELTA-T(g) was approximately 3 K.},
90 Author = {JACKSON, CL and MCKENNA, GB},
91 Date-Added = {2007-10-10 15:15:02 -0400},
92 Date-Modified = {2007-10-10 15:15:05 -0400},
93 Journal = {Journal of Non-Crystalline Solids},
94 Pages = {221-224},
95 Title = {THE GLASS-TRANSITION OF ORGANIC LIQUIDS CONFINED TO SMALL PORES},
96 Volume = {131},
97 Year = {1991}}
98
99 @book{Massalski:1986rt,
100 Address = {Metals Park, Ohio},
101 Annote = {LDR 01406cam 2200349 a 4500
102 001 3824145
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109 020 $a0871702622 (v. 1)
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114 245 00 $aBinary alloy phase diagrams /$ceditor-in-chief, Thaddeus B. Massalski ; editors, Joanne L. Murray, Lawrence H. Bennett, Hugh Baker.
115 260 $aMetals Park, Ohio :$bAmerican Society for Metals,$cc1986.
116 300 $a2 v. (xiii, 2224 p.) :$bill. ;$c29 cm.
117 500 $a"Alloy phase diagram master grid" in pocket.
118 504 $aBibliography: v. 1, p. xiii.
119 500 $aIncludes indexes.
120 650 0 $aAlloys.
121 650 0 $aPhase diagrams.
122 650 0 $aBinary systems (Metallurgy)
123 700 1 $aMassalski, T. B.
124 700 1 $aMurray, Joanne L.
125 700 1 $aBennett, L. H.$q(Lawrence Herman),$d1930-
126 700 1 $aBaker, Hugh.
127 952 $aLC's copy ("First printing, October 1986") has "American Society for Metals" on t.p., t.p. verso, and throughout text; "Metals Park, Ohio 44073" appears on t.p. ta01 12-16-2004
128 991 $bc-GenColl$hTN690$i.B528 1986$p00029709671$tCopy 1$v2: Fe-Ru - Zn-Zr$wBOOKS
129 },
130 Author = {Massalski, T. B and Murray, Joanne L and Bennett, L. H and Baker, Hugh},
131 Call-Number = {TN690},
132 Date-Added = {2007-10-09 19:12:42 -0400},
133 Date-Modified = {2007-10-09 19:13:18 -0400},
134 Dewey-Call-Number = {669/.94},
135 Genre = {Alloys},
136 Isbn = {0871702614 (set)},
137 Library-Id = {86017350},
138 Publisher = {American Society for Metals},
139 Title = {Binary alloy phase diagrams},
140 Year = {1986}}
141
142 @article{Ojovan:2006vn,
143 Abstract = {The thermodynamic approach to the viscosity and fragility of amorphous oxides was used to determine the topological characteristics of the disordered network-forming systems. Instead of the disordered system of atoms we considered the congruent disordered system of interconnecting bonds. The Gibbs free energy of network-breaking defects (configurons) was found based on available viscosity data. Amorphous silica and germania were used as reference disordered systems for which we found an excellent agreement of calculated and measured glass transition temperatures. We reveal that the Hausdorff dimension of the system of bonds changes from Euclidian three-dimensional below to fractal 2.55 +/- 0.05-dimensional geometry above the glass transition temperature.},
144 Author = {Ojovan, Michael I. and Lee, William E.},
145 Date-Added = {2007-10-09 18:40:55 -0400},
146 Date-Modified = {2007-10-09 18:44:16 -0400},
147 Doi = {DOI 10.1088/0953-8984/18/50/007},
148 Journal = {Journal of Physics-Condensed Matter},
149 Local-Url = {file://localhost/Users/charles/Documents/Papers/cm6_50_007.pdf},
150 Pages = {11507-11520},
151 Title = {Topologically disordered systems at the glass transition},
152 Volume = {18},
153 Year = {2006}}
154
155 @article{Jiang:1999yq,
156 Abstract = {A simple and unified model, free of any adjustable parameters, is developed for the finite size effect on glass transition temperatures of polymers and organic particles. As the thickness of polymer thin films and the radius of organic particles decrease, their glass transition temperatures decrease. For polymers, this decrease is independent of their molecular weight, but dependent on the correlation length for intermolecular cooperative rearrangement and the presence of substrates. The model predictions are consistent with available experimental results on size dependence of the glass transition temperatures for free-standing polystyrene thin films, polystyrene films supported on passivated substrates and o-terphenyl and benzyl alcohol nanoparticles. (C) 1999 Elsevier Science S.A. All rights reserved.},
157 Author = {Jiang, Q and Shi, HX and Li, JC},
158 Date-Added = {2007-10-09 18:33:30 -0400},
159 Date-Modified = {2007-10-09 18:33:32 -0400},
160 Journal = {Thin Solid Films},
161 Keywords = {glass; polymers; surface and interface states; surface thermodynamics},
162 Pages = {283-286},
163 Title = {Finite size effect on glass transition temperatures},
164 Volume = {354},
165 Year = {1999}}
166
167 @misc{Alcoutlabi:2005kx,
168 Abstract = {In this article, the effects of size and confinement at the nanometre size scale on both the melting temperature, T-m, and the glass transition temperature, T-g, are reviewed. Although there is an accepted thermodynamic model (the Gibbs-Thomson equation) for explaining the shift in the first-order transition, T-m, for confined materials, the depression of the melting point is still not fully understood and clearly requires further investigation. However, the main thrust of the work is a review of the field of confinement and size effects on the glass transition temperature. We present in detail the dynamic, thermodynamic and pseudo-thermodynamic measurements reported for the glass transition in confined geometries for both small molecules confined in nanopores and for ultrathin polymer films. We survey the observations that show that the glass transition temperature decreases, increases, remains the same or even disappears depending upon details of the experimental (or molecular simulation) conditions. Indeed, different behaviours have been observed for the same material depending on the experimental methods used. It seems that the existing theories of T-g are unable to explain the range of behaviours seen at the nanometre size scale, in part because the glass transition phenomenon itself is not fully understood. Importantly, here we conclude that the vast majority of the experiments have been carried out carefully and the results are reproducible. What is currently lacking appears to be an overall view, which accounts for the range of observations. The field seems to be experimentally and empirically driven rather than responding to major theoretical developments.},
169 Author = {Alcoutlabi, M and McKenna, GB},
170 Date-Added = {2007-10-09 18:31:39 -0400},
171 Date-Modified = {2007-10-09 18:49:43 -0400},
172 Local-Url = {file://localhost/Users/charles/Documents/Papers/cm5_15_R01.pdf},
173 Note = {Journal of Physics-Condensed Matter},
174 Pages = {R461-R524},
175 Title = {Effects of confinement on material behaviour at the nanometre size scale},
176 Volume = {17},
177 Year = {2005}}
178
179 @article{HUNT:1994fj,
180 Abstract = {An expression for the activation energy of the viscosity in the percolative transport regime demonstrates its proportionality to the peak in a distribution of barrier heights as well as to the width of the distribution. Such an expression implies that a ''blocking'' (slower than average) rate is responsible for the macroscopic relaxation time. This concept has recently been shown to account for a large number off phenomena related to the glass transition. Here it is shown that the average of a glass transition temperature over a large number of very small systems must correspond to an average barrier height; consequently the average glass temperature is reduced by confinement in pores because the average barrier height is smaller than the ''blocking'' barrier.},
181 Author = {HUNT, A},
182 Date-Added = {2007-10-09 18:30:13 -0400},
183 Date-Modified = {2007-10-09 18:30:27 -0400},
184 Journal = {Solid State Communications},
185 Pages = {527-532},
186 Title = {FINITE-SIZE EFFECTS ON THE GLASS-TRANSITION TEMPERATURE},
187 Volume = {90},
188 Year = {1994}}
189
190 @misc{HUNT:1992uq,
191 Abstract = {The relationship of the glass transition temperature T(g) to transport properties has been established. Simple arguments relating transport to distributions of barrier heights, barrier heights to random potential reliefs, and typical potential fluctuations to crystalline potentials allows the establishment of a relationship between T(g) and the melting temperature, T(m), by application of the Lindemann criterion for melting.},
192 Author = {HUNT, A},
193 Date-Added = {2007-10-09 18:19:48 -0400},
194 Date-Modified = {2007-10-09 18:20:00 -0400},
195 Local-Url = {file://localhost/Users/charles/Documents/Papers/cm923201.pdf},
196 Note = {Journal of Physics-Condensed Matter},
197 Pages = {L429-L431},
198 Title = {A SIMPLE CONNECTION BETWEEN THE MELTING TEMPERATURE AND THE GLASS TEMPERATURE IN A KINETIC-THEORY OF THE GLASS-TRANSITION},
199 Volume = {4},
200 Year = {1992}}
201
202 @article{Wang:2003fk,
203 Abstract = {The Debye temperature and glass transition temperature of a variety of bulk metallic glasses (BMGs) were determined by acoustic measurement and differential scanning calorimetry, respectively. The relationship between the Debye temperature and glass transition temperature of these BMGs was analyzed, and their observed correlation was interpreted in terms of the characteristics of the glass transition in BMGs.},
204 Author = {Wang, WH and Wen, P and Zhao, DQ and Pan, MX and Wang, RJ},
205 Date-Added = {2007-10-09 18:12:41 -0400},
206 Date-Modified = {2007-10-09 18:15:53 -0400},
207 Journal = {Journal of Materials Research},
208 Local-Url = {file://localhost/Users/charles/Documents/Papers/494770.pdf},
209 Pages = {2747-2751},
210 Title = {Relationship between glass transition temperature and Debye temperature in bulk metallic glasses},
211 Volume = {18},
212 Year = {2003}}
213
214 @book{Mazurin:1993lr,
215 Address = {Amsterdam},
216 Annote = {LDR 01412cam 2200253 a 4500
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218 005 19931007093932.9
219 008 830610m19831993ne a b 001 0 eng
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225 050 00 $aTP848$b.H36 1983
226 082 00 $a620.1/44/0212$219
227 245 00 $aHandbook of glass data.
228 260 $aAmsterdam ;$aNew York :$bElsevier ;$aNew York, N.Y. :$bDistributors for the U.S. and Canada, Elsevier Science Pub. Co.,$c1983-1993.
229 300 $a5 v. :$bill. ;$c26 cm.
230 440 0 $aPhysical sciences data ;$v15
231 504 $aIncludes bibliographies and indexes.
232 505 1 $apt. A. Silica glass and binary silicate glasses / O.V. Mazurin, M.V. Streltsina, and T.P. Shvaiko-Shvaikovskaya -- pt. B. Single-component and binary non-silicate oxide glasses / O.V. Mazurin, M.V. Streltsina, and T.P. Shvaiko-Shvaikovskaya -- pt. C. Ternary silicate glasses / O.V. Mazurin, M.V. Streltsina, and T.P. Shvaiko-Shvaikovskaya -- pt. D. Ternary non-silicate glasses / O.V. Mazurin ... [et al.] -- pt. E. Single-component, binary, and ternary oxide glasses / O.V. Mazurin, M.V. Streltsina, and T.P. Shvaiko-Shvaikovskaysa.
233 650 0 $aGlass.
234 700 1 $aMazurin, Oleg Vsevolodovich.
235 991 $bc-GenColl$hTP848$i.H36 1983$tCopy 1$wBOOKS
236 },
237 Author = {Mazurin, Oleg Vsevolodovich},
238 Call-Number = {TP848},
239 Date-Added = {2007-10-09 18:02:00 -0400},
240 Date-Modified = {2007-10-09 18:02:10 -0400},
241 Dewey-Call-Number = {620.1/44/0212},
242 Genre = {Glass},
243 Isbn = {0444416897 (U.S. : set)},
244 Library-Id = {83011642},
245 Publisher = {Elsevier},
246 Title = {Handbook of glass data},
247 Volume = {15},
248 Year = {1993}}
249
250 @article{Plech:2003yq,
251 Abstract = {The lattice expansion and relaxation of noble-metal nanoparticles heated by intense femtosecond laser pulses are measured by pump-probe time-resolved X-ray scattering. Following the laser pulse, shape and angular shift of the (111) Bragg reflection from crystalline silver and gold particles with diameters from 20 to 100 nm are resolved stroboscopically using 100 ps X-ray pulses from a synchrotron. We observe a transient lattice expansion that corresponds to a laser-induced temperature rise of up to 200 K, and a subsequent lattice relaxation. The relaxation occurs within several hundred picoseconds for embedded silver particles, and several nanoseconds for supported free gold particles. The relaxation time shows a strong dependence on particle size. The relaxation rate appears to be limited by the thermal coupling of the particles to the matrix and substrate, respectively, rather than by bulk thermal diffusion. Furthermore, X-ray diffraction can resolve the internal strain state of the nanoparticles to separate non-thermal from thermal motion of the lattice.},
252 Author = {Plech, A and Kurbitz, S and Berg, KJ and Graener, H and Berg, G and Gresillon, S and Kaempfe, M and Feldmann, J and Wulff, M and von Plessen, G},
253 Date-Added = {2007-10-09 17:37:01 -0400},
254 Date-Modified = {2007-10-09 17:37:01 -0400},
255 Journal = {Europhysics Letters},
256 Pages = {762-768},
257 Title = {Time-resolved X-ray diffraction on laser-excited metal nanoparticles},
258 Volume = {61},
259 Year = {2003}}
260
261 @article{Plech:2004vn,
262 Abstract = {Gold nanoparticles have been adsorbed as monolayers on silicon and glass substrates and the structure evolution following femtosecond laser excitation has been analyzed by means of time resolved X-ray scattering. The synchronization of the laser to the X-ray pulse structure emitted from a third generation synchrotron source allows to obtain a natural time resolution of 100 ps for the lattice kinetics. The prospects of using a picosecond X-ray streak camera are explored. The lattice kinetics are dominated by the fast heating of the particle lattice and nanosecond cooling times. However, the analysis of peak shapes reveals the presence of nonthermal motion within the lattice. Unexpectedly large relaxation times for the thermalization of vibrational modes are found and are attributed to the weak mechanical coupling to the substrate. Strong nonuniform strain develops within the domain of electron-phonon interaction time regime after the laser excitation as seen with the X-ray streak camera. (C) 2003 Elsevier B.V. All rights reserved.},
263 Author = {Plech, A and Gresillon, S and von Plessen, G and Scheidt, K and Naylor, G},
264 Date-Added = {2007-10-09 17:37:01 -0400},
265 Date-Modified = {2007-10-09 17:37:01 -0400},
266 Doi = {DOI 10.1016/j.chemphys.2003.10.041},
267 Journal = {Chemical Physics},
268 Keywords = {nanoparticles; picosecond time resolution; structure; femtosecond laser excitation; thermal kinetics},
269 Pages = {183-191},
270 Title = {Structural kinetics of laser-excited metal nanoparticles supported on a surface},
271 Volume = {299},
272 Year = {2004}}
273
274 @article{Plech:2007rt,
275 Abstract = {A thermal phase transition has been resolved in gold nanoparticles supported on a surface. By use of asynchronous optical sampling with coupled femtosecond oscillators, the Lamb vibrational modes could be resolved as a function of annealing temperature. At a temperature of 104 degrees C the damping rate and phase changes abruptly, indicating a structural transition in the particle, which is explained as the onset of surface melting.},
276 Author = {Plech, Anton and Cerna, Roland and Kotaidis, Vassilios and Hudert, Florian and Bartels, Albrecht and Dekorsy, Thomas},
277 Date-Added = {2007-10-09 17:37:01 -0400},
278 Date-Modified = {2007-10-09 17:40:03 -0400},
279 Doi = {DOI 10.1021/nl070187t},
280 Journal = {Nano Letters},
281 Local-Url = {file://localhost/Users/charles/Documents/Papers/nl070187t.pdf},
282 Pages = {1026-1031},
283 Title = {A surface phase transition of supported gold nanoparticles},
284 Volume = {7},
285 Year = {2007}}
286
287 @article{Plech:2005kx,
288 Abstract = {The transient structural response of laser excited gold nanoparticle sols has been recorded by pulsed X-ray scattering. Time resolved wide angle and small angle scattering (SAXS) record the changes in structure both of the nanoparticles and the water environment subsequent to femtosecond laser excitation. Within the first nanosecond after the excitation of the nanoparticles, the water phase shows a signature of compression, induced by a heat-induced evaporation of the water shell close to the heated nanoparticles. The particles themselves undergo a melting transition and are fragmented to Form new clusters in the nanometer range. (C) 2004 Elsevier B.V. All rights reserved.},
289 Author = {Plech, A and Kotaidis, V and Lorenc, M and Wulff, M},
290 Date-Added = {2007-10-09 17:32:46 -0400},
291 Date-Modified = {2007-10-09 17:34:08 -0400},
292 Doi = {DOI 10.1016/j.cplett.2004.11.072},
293 Journal = {Chemical Physics Letters},
294 Local-Url = {file://localhost/Users/charles/Documents/Papers/sdarticle3.pdf},
295 Pages = {565-569},
296 Title = {Thermal dynamics in laser excited metal nanoparticles},
297 Volume = {401},
298 Year = {2005}}
299
300 @misc{Hartland:2006fj,
301 Abstract = {Excitation of metal nanoparticles with subpicosecond laser pulses causes a rapid increase in the lattice temperature. which can impulsively excite the phonon modes of the particle that correlate with the expansion coordinates. The vibrational periods depend on the size. shape, and elastic constants of the particles. Thus, time-resolved spectroscopy can be used to examine the material properties of nanometer-sized objects. This review provides a brief overview of the steady-state and time-resolved electronic spectroscopy of metal particles, which is important for understanding why vibrational motion appears in transient absorption traces. I also describe how the vibrational modes observed in the experiments are assigned. and what information can be obtained from the measurements. Our work has been mainly concerned with noble metal particles (gold and silver) in aqueous solution. The different shapes that have been examined to date include spheres, rods, and triangles, all with different sizes.},
302 Author = {Hartland, GV},
303 Date-Added = {2007-10-09 17:21:42 -0400},
304 Date-Modified = {2007-10-09 17:24:13 -0400},
305 Doi = {DOI 10.1146/annurev.physchem.57.032905.104533},
306 Keywords = {metals; nanorods; phonon modes; time-resolved spectroscopy; elastic moduli; laser-induced heating},
307 Local-Url = {file://localhost/Users/charles/Documents/Papers/annurev.physchem.57.032905.104533.pdf},
308 Note = {Annual Review of Physical Chemistry},
309 Pages = {403-430},
310 Title = {Coherent excitation of vibrational modes in metallic nanoparticles},
311 Volume = {57},
312 Year = {2006}}
313
314 @article{Wilson:2002uq,
315 Abstract = {We investigate suspensions of 3-10 nm diameter Au, Pt, and AuPd nanoparticles as probes of thermal transport in fluids and determine approximate values for the thermal conductance G of the particle/fluid interfaces. Subpicosecond lambda=770 nm optical pulses from a Ti:sapphire mode-locked laser are used to heat the particles and interrogate the decay of their temperature through time-resolved changes in optical absorption. The thermal decay of alkanethiol-terminated Au nanoparticles in toluene is partially obscured by other effects; we set a lower limit G>20 MW m(-2)K(-1). The thermal decay of citrate-stabilized Pt nanoparticles in water gives Gapproximate to130 MW m(-2) K-1. AuPd alloy nanoparticles in toluene and stabilized by alkanethiol termination give Gapproximate to5 MW m(-2) K-1. The measured G are within a factor of 2 of theoretical estimates based on the diffuse-mismatch model.},
316 Author = {Wilson, OM and Hu, XY and Cahill, DG and Braun, PV},
317 Date-Added = {2007-10-09 17:17:36 -0400},
318 Date-Modified = {2007-10-09 17:18:45 -0400},
319 Doi = {ARTN 224301},
320 Journal = {Physical Review B},
321 Local-Url = {file://localhost/Users/charles/Documents/Papers/e2243010.pdf},
322 Title = {Colloidal metal particles as probes of nanoscale thermal transport in fluids},
323 Volume = {66},
324 Year = {2002}}
325
326 @article{Dick:2002qy,
327 Abstract = {We report on the size dependence of the melting temperature of silica-encapsulated gold nanoparticles. The melting point was determined using differential thermal analysis (DTA) coupled to thermal gravimetric analysis (TGA) techniques. The small gold particles, with sizes ranging from 1.5 to 20 nm, were synthesized using radiolytic and chemical reduction procedures and then coated with porous silica shells to isolate the particles from one another. The resulting silica-encapsulated gold particles show clear melting endotherms in the DTA scan with no accompanying weight loss of the material in the TGA examination. The silica shell acts as a nanocrucible for the melting gold with little effect on the melting temperature itself, even though the analytical procedure destroys the particles once they melt. Phenomenological thermodynamic predictions of the size dependence of the melting point of gold agree with the experimental observation. Implications of these observations to the self-diffusion coefficient of gold in the nanoparticles are discussed, especially as they relate to the spontaneous alloying of core-shell bimetallic particles.},
328 Author = {Dick, K and Dhanasekaran, T and Zhang, ZY and Meisel, D},
329 Date-Added = {2007-10-09 16:44:50 -0400},
330 Date-Modified = {2007-10-09 16:47:53 -0400},
331 Doi = {DOI 10.1021/ja017281a},
332 Journal = {Journal of the American Chemical Society},
333 Pages = {2312-2317},
334 Title = {Size-dependent melting of silica-encapsulated gold nanoparticles},
335 Volume = {124},
336 Year = {2002}}
337
338 @misc{West:2003fk,
339 Abstract = {Advances in chemistry and physics are providing an expanding array of nanostructured materials with unique and powerful optical properties. These nanomaterials provide a new set of tools that are available to biomedical engineers, biologists, and medical scientists who seek new tools as biosensors and probes of biological fluids, cells, and tissue chemistry and function. Nanomaterials are also being used to develop optically controlled devices for applications such as modulated drug delivery as well as optical therapeutics. This review discusses applications that have been successfully demonstrated using nanomaterials including semiconductor nanocrystals, gold nanoparticles, gold nanoshells, and silver plasmon resonant particles.},
340 Author = {West, JL and Halas, NJ},
341 Date-Added = {2007-10-09 16:38:17 -0400},
342 Date-Modified = {2007-10-09 16:39:04 -0400},
343 Doi = {DOI 10.1146/annurev.bioeng.5.011303.120723},
344 Keywords = {nanotechnology; nanoparticle; optics; biosensor; quantum dot; gold colloid; plasmon resonant particle; nanoshell},
345 Note = {Annual Review of Biomedical Engineering},
346 Pages = {285-292},
347 Title = {Engineered nanomaterials for biophotonics applications: Improving sensing, imaging, and therapeutics},
348 Volume = {5},
349 Year = {2003}}
350
351 @misc{Hu:2006lr,
352 Abstract = {The surface plasmon resonance peaks of gold nanostructures can be tuned from the visible to the near infrared region by controlling the shape and structure ( solid vs. hollow). In this tutorial review we highlight this concept by comparing four typical examples: nanospheres, nanorods, nanoshells, and nanocages. A combination of this optical tunability with the inertness of gold makes gold nanostructures well suited for various biomedical applications.},
353 Author = {Hu, Min and Chen, Jingyi and Li, Zhi-Yuan and Au, Leslie and Hartland, Gregory V. and Li, Xingde and Marquez, Manuel and Xia, Younan},
354 Date-Added = {2007-10-09 15:39:55 -0400},
355 Date-Modified = {2007-10-09 15:43:59 -0400},
356 Doi = {DOI 10.1039/b517615h},
357 Local-Url = {file://localhost/Users/charles/Documents/Papers/b517615h.pdf},
358 Note = {Chemical Society Reviews},
359 Pages = {1084-1094},
360 Title = {Gold nanostructures: engineering their plasmonic properties for biomedical applications},
361 Volume = {35},
362 Year = {2006}}
363
364 @article{Zhu:1997lr,
365 Abstract = {Experimental bulk mixing data on disordered bimetallics of Ni, Cu, Rh, Pd, Ag, Ir, Pt, and Au are used to parametrize the recently developed {$\backslash$}underline{\{}b{\}}ond {$\backslash$}underline{\{}o{\}}rder metal {$\backslash$}underline{\{}s{\}}imulator (BOS-mixing) model, including a full error analysis. This model characterizes the variation of metal-metal bond strength with number and type of atomic neighbors. The model is shown to accurately fit experimental mixing energy curves as a function of composition irrespective of whether the curves are symmetric or asymmetric around the 50{\%} value. As an illustration of the utility of the BOS-mixing model, we predict the microstructures of bimetallic clusters with 201 atoms (or 61{\%} dispersion) and a composition of 50{\%}-50{\%}. The examples demonstrate how differences in surface energy, mixing energy, and mixing entropy either compete or cooperate in determining the microstructure of small bimetallic clusters.},
366 Author = {Zhu, Ling and DePristo, Andrew E.},
367 Date-Added = {2007-10-03 14:57:41 -0400},
368 Date-Modified = {2007-10-03 14:58:17 -0400},
369 Journal = {Journal of Catalysis},
370 Local-Url = {file://localhost/Users/charles/Documents/Papers/sdarticle2.pdf},
371 Number = {2},
372 Pages = {400--407},
373 Title = {Microstructures of Bimetallic Clusters: Bond Order Metal Simulator for Disordered Alloys},
374 Ty = {JOUR},
375 Url = {http://www.sciencedirect.com/science/article/B6WHJ-45KMYC8-80/2/0c7f43e48e4dfa1206cb717c85db1972},
376 Volume = {167},
377 Year = {1997}}
378
379 @article{MainardiD.S._la0014306,
380 Affiliation = {Department of Chemical Engineering, University of South Carolina, Columbia, South Carolina 29208},
381 Author = {Mainardi, D.S. and Balbuena, P.B.},
382 Date-Added = {2007-10-03 14:53:26 -0400},
383 Date-Modified = {2007-10-03 15:01:14 -0400},
384 Issn = {0743-7463},
385 Journal = {Langmuir},
386 Local-Url = {file://localhost/Users/charles/Documents/Papers/la0014306.pdf},
387 Number = {6},
388 Pages = {2047-2050},
389 Title = {Monte Carlo Simulation of Cu-Ni Nanoclusters: Surface Segregation Studies},
390 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/la0014306},
391 Volume = {17},
392 Year = {2001}}
393
394 @article{nose:1803,
395 Author = {Shuichi Nose and Fumiko Yonezawa},
396 Date-Added = {2007-09-21 13:00:58 -0400},
397 Date-Modified = {2007-09-21 13:01:18 -0400},
398 Doi = {10.1063/1.450427},
399 Journal = {The Journal of Chemical Physics},
400 Keywords = {LENNARDJONES POTENTIAL; COMPUTERIZED SIMULATION; MELTING; CRYSTALLIZATION; MOLECULAR DYNAMICS CALCULATION; LIQUID STRUCTURE; NUCLEATION; MATHEMATICAL MODELS},
401 Local-Url = {file://localhost/Users/charles/Documents/Papers/JChemPhys_84_1803.pdf},
402 Number = {3},
403 Pages = {1803-1814},
404 Publisher = {AIP},
405 Title = {Isothermal--isobaric computer simulations of melting and crystallization of a Lennard-Jones system},
406 Url = {http://link.aip.org/link/?JCP/84/1803/1},
407 Volume = {84},
408 Year = {1986}}
409
410 @article{hsu:4974,
411 Author = {C. S. Hsu and Aneesur Rahman},
412 Date-Added = {2007-09-21 12:52:21 -0400},
413 Date-Modified = {2007-09-21 12:52:40 -0400},
414 Doi = {10.1063/1.438311},
415 Journal = {The Journal of Chemical Physics},
416 Keywords = {NUCLEATION; SYMMETRY; INTERATOMIC FORCES; RUBIDIUM; LENNARD=(HYPHEN)=JONES POTENTIAL; CORRELATIONS; CRYSTALS},
417 Local-Url = {file://localhost/Users/charles/Documents/Papers/JChemPhys_71_4974.pdf},
418 Number = {12},
419 Pages = {4974-4986},
420 Publisher = {AIP},
421 Title = {Interaction potentials and their effect on crystal nucleation and symmetry},
422 Url = {http://link.aip.org/link/?JCP/71/4974/1},
423 Volume = {71},
424 Year = {1979}}
425
426 @article{PhysRevLett.53.1951,
427 Author = {Shechtman, D. and Blech, I. and Gratias, D. and Cahn, J. W.},
428 Date-Added = {2007-09-20 17:44:19 -0400},
429 Date-Modified = {2007-09-20 17:44:57 -0400},
430 Doi = {10.1103/PhysRevLett.53.1951},
431 Journal = {Phys. Rev. Lett.},
432 Local-Url = {file://localhost/Users/charles/Documents/Papers/p1951_1.pdf},
433 Month = {Nov},
434 Number = {20},
435 Numpages = {2},
436 Pages = {1951--1953},
437 Publisher = {American Physical Society},
438 Title = {Metallic Phase with Long-Range Orientational Order and No Translational Symmetry},
439 Volume = {53},
440 Year = {1984}}
441
442 @article{PhysRevLett.56.1168,
443 Author = {Stephens, Peter W. and Goldman, Alan I.},
444 Date-Added = {2007-09-20 17:35:02 -0400},
445 Date-Modified = {2007-09-20 17:35:08 -0400},
446 Doi = {10.1103/PhysRevLett.56.1168},
447 Journal = {Phys. Rev. Lett.},
448 Local-Url = {file://localhost/Users/charles/Documents/Papers/p1168_1.pdf},
449 Month = {Mar},
450 Number = {11},
451 Numpages = {3},
452 Pages = {1168--1171},
453 Publisher = {American Physical Society},
454 Title = {Sharp Diffraction Maxima from an Icosahedral Glass},
455 Volume = {56},
456 Year = {1986}}
457
458 @article{HOARE:1976fk,
459 Author = {HOARE, M},
460 Date-Added = {2007-09-20 16:52:33 -0400},
461 Date-Modified = {2007-09-20 16:52:37 -0400},
462 Journal = {Annals of the New York Academy of Sciences},
463 Pages = {186-207},
464 Title = {STABILITY AND LOCAL ORDER IN SIMPLE AMORPHOUS PACKINGS},
465 Volume = {279},
466 Year = {1976}}
467
468 @article{19871127,
469 Abstract = {Numerous examples of metallic alloys have been discovered, the atomic structures of which display an icosahedral symmetry that is impossible for ordinary periodic crystals. Recent experimental results support the hypothesis that the alloys are examples of a new ``quasicrystal'' phase of solid matter. Observed deviations from an ideal quasicrystal structure can be explained as ``phason strains,'' a special class of defects predicted to be the dominant type of imperfection formed during solidification.},
470 Author = {Steinhardt, Paul J.},
471 Copyright = {Copyright 1987 American Association for the Advancement of Science},
472 Date-Added = {2007-09-20 15:31:29 -0400},
473 Date-Modified = {2007-09-20 15:31:36 -0400},
474 Issn = {0036-8075},
475 Journal = {Science},
476 Jstor_Articletype = {Full Length Article},
477 Jstor_Date = {19871127},
478 Jstor_Formatteddate = {Nov. 27, 1987},
479 Local-Url = {file://localhost/Users/charles/Documents/Papers/steinhart_science.pdf},
480 Month = {nov},
481 Number = {4831},
482 Pages = {1242--1247},
483 Publisher = {American Association for the Advancement of Science},
484 Series = {3},
485 Title = {Icosahedral Solids: A New Phase of Matter?},
486 Url = {http://links.jstor.org/sici?sici=0036-8075%2819871127%293%3A238%3A4831%3C1242%3AISANPO%3E2.0.CO%3B2-I},
487 Volume = {238},
488 Year = {1987}}
489
490 @article{Waal:1995lr,
491 Abstract = {It is proposed that the splitting of the second peak of the total static structure factor, S(k), of many metallic glasses is essentially the same feature as the indentation at k{$[$}sigma{$]$} = (9/2){$[$}pi{$]$} in the function (sin k {$[$}sigma{$]$} + {$[$}alpha{$]$}-1 sin k{$[$}alpha{$]$}{$[$}sigma{$]$}), caused by the coincidence of the fourth minimum of the second term with the third maximum of the first term when {$[$}alpha{$]$} {$[$}approximate{$]$} 5/3. Together with the strong-weak relation of the split peak components of S(k), this feature indicates the splitting to be direct evidence for face-sharing of regular tetrahedra ({$[$}alpha{$]$} = 2{$[$}square root{$]$}2/3) dominating the topological short range order; increasing the number of face-sharing tetrahedra in local structural units indeed increases the amount of peak splitting in S(k); a dense random packing of well defined identical structural units (DRPSU), with neighbouring units linked together by a shared icosahedron, is described in detail. The packing fraction in a homogeneous, isotropic 1078-atom model is 0.67, after static relaxation under a two-body Lennard-Jones potential.},
492 Author = {van de Waal, Benjamin W.},
493 Date-Added = {2007-09-20 13:17:52 -0400},
494 Date-Modified = {2007-09-20 13:18:07 -0400},
495 Journal = {Journal of Non-Crystalline Solids},
496 Local-Url = {file://localhost/Users/charles/Documents/Papers/sdarticle1.pdf},
497 Number = {1-2},
498 Pages = {118--128},
499 Title = {On the origin of second-peak splitting in the static structure factor of metallic glasses},
500 Ty = {JOUR},
501 Url = {http://www.sciencedirect.com/science/article/B6TXM-3YB50T0-Y/2/cfc3dd6cbf53b26af1daf9cddb6dd2e3},
502 Volume = {189},
503 Year = {1995}}
504
505 @article{turnbull:411,
506 Author = {David Turnbull},
507 Date-Added = {2007-09-19 16:54:15 -0400},
508 Date-Modified = {2007-09-19 16:58:15 -0400},
509 Doi = {10.1063/1.1700435},
510 Journal = {The Journal of Chemical Physics},
511 Local-Url = {file://localhost/Users/charles/Documents/Papers/JChemPhys_20_411.pdf},
512 Number = {3},
513 Pages = {411-424},
514 Publisher = {AIP},
515 Title = {Kinetics of Solidification of Supercooled Liquid Mercury Droplets},
516 Url = {http://link.aip.org/link/?JCP/20/411/1},
517 Volume = {20},
518 Year = {1952}}
519
520 @article{235821,
521 Address = {New York, NY, USA},
522 Author = {C. Bradford Barber and David P. Dobkin and Hannu Huhdanpaa},
523 Date-Added = {2007-09-18 19:11:42 -0400},
524 Date-Modified = {2007-09-18 19:11:50 -0400},
525 Doi = {http://doi.acm.org/10.1145/235815.235821},
526 Issn = {0098-3500},
527 Journal = {ACM Trans. Math. Softw.},
528 Local-Url = {file://localhost/Users/charles/Documents/Papers/p469-barber.pdf},
529 Number = {4},
530 Pages = {469--483},
531 Publisher = {ACM Press},
532 Title = {The quickhull algorithm for convex hulls},
533 Volume = {22},
534 Year = {1996}}
535
536 @article{0031-9155-41-9-016,
537 Abstract = {Volume measurements are useful in many branches of science and medicine. They are usually accomplished by acquiring a sequence of cross sectional images through the object using an appropriate scanning modality, for example x-ray computed tomography (CT), magnetic resonance (MR) or ultrasound (US). In the cases of CT and MR, a dividing cubes algorithm can be used to describe the surface as a triangle mesh. However, such algorithms are not suitable for US data, especially when the image sequence is multiplanar (as it usually is). This problem may be overcome by manually tracing regions of interest (ROIs) on the registered multiplanar images and connecting the points into a trianglar mesh. In this paper we describe and evaluate a new discreet form of Gauss' theorem which enables the calculation of the volume of any enclosed surface described by a triangular mesh. The volume is calculated by summing the vector product of the centroid, area and normal of each surface triangle. The algorithm was tested on computer-generated objects, US-scanned balloons, livers and kidneys and CT-scanned clay rocks. The results, expressed as the mean percentage difference one standard deviation were , , and \% for balloons, livers, kidneys and rocks respectively. The results compare favourably with other volume estimation methods such as planimetry and tetrahedral decomposition.},
538 Author = {S W Hughes, T J D'Arcy, D J Maxwell, J E Saunders, C F Ruff, W S C Chiu and R J Sheppard},
539 Date-Added = {2007-09-18 18:49:49 -0400},
540 Date-Modified = {2007-09-18 18:49:55 -0400},
541 Journal = {Physics in Medicine and Biology},
542 Local-Url = {file://localhost/Users/charles/Documents/Papers/m60915.pdf},
543 Number = {9},
544 Pages = {1809-1821},
545 Title = {Application of a new discreet form of Gauss' theorem for measuring volume},
546 Url = {http://stacks.iop.org/0031-9155/41/1809},
547 Volume = {41},
548 Year = {1996}}
549
550 @article{Balucani:1990fk,
551 Author = {Balucani, U. and Vallauri, R.},
552 Date-Added = {2007-09-18 11:47:47 -0400},
553 Date-Modified = {2007-09-18 11:48:01 -0400},
554 Journal = {Chemical Physics Letters},
555 Local-Url = {file://localhost/Users/charles/Documents/Papers/sdarticle0.pdf},
556 Number = {1},
557 Pages = {77--81},
558 Title = {Evolution of bond-angle distribution from liquid to glassy states},
559 Ty = {JOUR},
560 Url = {http://www.sciencedirect.com/science/article/B6TFN-44XDV0S-9H/2/fa1467fe68d6474b775de0f4cfd7f7ab},
561 Volume = {166},
562 Year = {1990}}
563
564 @article{Sheng:2006lr,
565 Annote = {10.1038/nature04421},
566 Author = {Sheng, H. W. and Luo, W. K. and Alamgir, F. M. and Bai, J. M. and Ma, E.},
567 Date-Added = {2007-09-17 12:50:02 -0400},
568 Date-Modified = {2007-09-17 12:50:07 -0400},
569 Isbn = {0028-0836},
570 Journal = {Nature},
571 L3 = {http://www.nature.com/nature/journal/v439/n7075/suppinfo/nature04421_S1.html},
572 Local-Url = {file://localhost/Users/charles/Documents/Papers/nature04421.pdf},
573 M3 = {10.1038/nature04421},
574 Number = {7075},
575 Pages = {419--425},
576 Title = {Atomic packing and short-to-medium-range order in metallic glasses},
577 Ty = {JOUR},
578 Url = {http://dx.doi.org/10.1038/nature04421},
579 Volume = {439},
580 Year = {2006}}
581
582 @article{19521106,
583 Author = {Frank, F. C.},
584 Copyright = {Copyright 1952 The Royal Society},
585 Date-Added = {2007-09-17 12:26:50 -0400},
586 Date-Modified = {2007-09-17 12:26:56 -0400},
587 Group = {A Discussion on Theory of Liquids},
588 Issn = {0080-4630},
589 Journal = {Proceedings of the Royal Society of London. Series A, Mathematical and Physical Sciences},
590 Jstor_Articletype = {Full Length Article},
591 Jstor_Date = {19521106},
592 Jstor_Formatteddate = {Nov. 6, 1952},
593 Local-Url = {file://localhost/Users/charles/Documents/Papers/frank_icos_liq.pdf},
594 Month = {nov},
595 Number = {1120},
596 Pages = {43--46},
597 Publisher = {The Royal Society},
598 Title = {Supercooling of Liquids},
599 Url = {http://links.jstor.org/sici?sici=0080-4630%2819521106%29215%3A1120%3C43%3ASOL%3E2.0.CO%3B2-9},
600 Volume = {215},
601 Year = {1952}}
602
603 @article{PhysRevLett.91.135505,
604 Author = {Di Cicco, Andrea and Trapananti, Angela and Faggioni, Silena and Filipponi, Adriano},
605 Date-Added = {2007-09-17 12:15:58 -0400},
606 Date-Modified = {2007-09-17 12:16:09 -0400},
607 Doi = {10.1103/PhysRevLett.91.135505},
608 Journal = {Phys. Rev. Lett.},
609 Local-Url = {file://localhost/Users/charles/Documents/Papers/e135505.pdf},
610 Month = {Sep},
611 Number = {13},
612 Numpages = {4},
613 Pages = {135505},
614 Publisher = {American Physical Society},
615 Title = {Is There Icosahedral Ordering in Liquid and Undercooled Metals?},
616 Volume = {91},
617 Year = {2003}}
618
619 @article{duijneveldt:4655,
620 Author = {J. S. van Duijneveldt and D. Frenkel},
621 Date-Added = {2007-09-13 16:50:13 -0400},
622 Date-Modified = {2007-09-13 16:50:22 -0400},
623 Doi = {10.1063/1.462802},
624 Journal = {The Journal of Chemical Physics},
625 Keywords = {COMPUTERIZED SIMULATION; FREE ENERGY; CRYSTALS; NUCLEATION; THERMAL BARRIERS; MONTE CARLO METHOD; SUPERCOOLED LIQUIDS; FCC LATTICES; BCC LATTICES; SIMULATION; HOMOGENEITY},
626 Local-Url = {file://localhost/Users/charles/Documents/Papers/JChemPhys_96_4655.pdf},
627 Number = {6},
628 Pages = {4655-4668},
629 Publisher = {AIP},
630 Title = {Computer simulation study of free energy barriers in crystal nucleation},
631 Url = {http://link.aip.org/link/?JCP/96/4655/1},
632 Volume = {96},
633 Year = {1992}}
634
635 @article{Jiang:2005lr,
636 Author = {Hongjin Jiang and Kyoung-sik Moon and Wong, C. P.},
637 Date-Added = {2007-09-11 14:55:57 -0400},
638 Date-Modified = {2007-09-11 14:56:06 -0400},
639 Isbn = {1550-5723},
640 Journal = {Advanced Packaging Materials: Processes, Properties and Interfaces, 2005. Proceedings. International Symposium on},
641 Journal1 = {Advanced Packaging Materials: Processes, Properties and Interfaces, 2005. Proceedings. International Symposium on},
642 Keywords = {adhesives; conducting polymers; copper alloys; filled polymers; filler metals; integrated circuit interconnections; materials preparation; nanoparticles; powder technology; powders; silver alloys; Ag-Cu alloy nanoparticle synthesis; AgCu; TEM observation; UV absorption; conductive filler; electrically conductive adhesive; lead-free interconnect material; mixed alloy structure; polyol process; silver-copper alloy},
643 Local-Url = {file://localhost/Users/charles/Documents/Papers/01432072.pdf},
644 Pages = {173--177},
645 Title = {Synthesis of Ag-Cu alloy nanoparticles for lead-free interconnect materials},
646 Title1 = {Advanced Packaging Materials: Processes, Properties and Interfaces, 2005. Proceedings. International Symposium on},
647 Ty = {CONF},
648 Year = {2005}}
649
650 @unpublished{hartlandPrv2007,
651 Author = {G. V. Hartland},
652 Date-Added = {2007-09-10 16:28:58 -0400},
653 Date-Modified = {2007-09-10 16:34:05 -0400},
654 Howpublished = {(private communication)},
655 Note = {Private Communication},
656 Title = {Interfacial Conductance for Nanoparticles}}
657
658 @article{xuan:043507,
659 Author = {Yimin Xuan and Qiang Li and Xing Zhang and Motoo Fujii},
660 Date-Added = {2007-09-10 16:25:23 -0400},
661 Date-Modified = {2007-09-10 16:26:01 -0400},
662 Doi = {10.1063/1.2245203},
663 Eid = {043507},
664 Journal = {Journal of Applied Physics},
665 Keywords = {nanoparticles; suspensions; stochastic processes; Brownian motion; heat transfer; thermal conductivity; two-phase flow},
666 Local-Url = {file://localhost/Users/charles/Documents/Papers/JApplPhys_100_043507.pdf},
667 Number = {4},
668 Numpages = {6},
669 Pages = {043507},
670 Publisher = {AIP},
671 Title = {Stochastic thermal transport of nanoparticle suspensions},
672 Url = {http://link.aip.org/link/?JAP/100/043507/1},
673 Volume = {100},
674 Year = {2006}}
675
676 @article{Henglein:1999fk,
677 Abstract = {Colloidal silver sols of long-time stability are formed in the gamma-irradiation of 1.0 x 10(-4) M AgClO4 solutions, which also contain 0.3 M 2-propanol, 2.5 x 10(-2) M N2O, and sodium citrate in various concentrations. The reduction of Ag+ in these solutions is brought about by the I-hydroxyalkyl radical generated in the radiolysis of 2-propanol; citrate does not act as a reductant but solely as a stabilizer of the colloidal particles formed. Its concentration is varied in the range from 5.0 x 10(-5) to 1.5 x 10(-3) M, and the size and size distribution of the silver particles are studied by electron microscopy. At low citrate concentration, partly agglomerated large particles are formed that have many imperfections. In an intermediate range (a few 10(-4) M), well-separated particles with a rather narrow size distribution and little imperfections are formed, the size slightly decreasing with increasing citrate concentration. At high citrate concentrations, large lumps of coalesced silver particles are present, due to destabilization by the high ionic strength of the solution. These findings are explained by two growth mechanisms: condensation of small silver clusters (type-I growth), and reduction of Ag+ on silver particles via radical-to-particle electron transfer (type-II growth). The particles formed in the intermediate range of citrate concentration were studied by high-resolution electron microscopy and computer simulations. They constitute icosahedra and cuboctahedra.},
678 Author = {Henglein, A and Giersig, M},
679 Date-Added = {2007-09-07 18:11:39 -0400},
680 Date-Modified = {2007-09-07 18:17:03 -0400},
681 Journal = {Journal of Physical Chemistry B},
682 Local-Url = {file://localhost/Users/charles/Documents/Papers/jp9925334.pdf},
683 Pages = {9533-9539},
684 Title = {Formation of colloidal silver nanoparticles: Capping action of citrate},
685 Volume = {103},
686 Year = {1999}}
687
688 @article{Link:2000lr,
689 Abstract = {Driven by the search for new materials with interesting and unique properties and also by the fundamental question of how atomic and molecular physical behaviour develops with increasing size, the field of nanoparticle research has grown immensely in the last two decades. Partially for these reasons, colloidal solutions of metallic (especially silver and gold) nanoparticles have long fascinated scientists because of their very intense colours. The intense red colour of colloidal gold nanoparticles is due to their surface plasmon absorption. This article describes the physical origin of the surface plasmon absorption in gold nanoparticles with emphasis on the Mie and also the Maxwell-Garnett theory and reviews the effects of particle size and shape on the resonance condition. A better understanding of the relationship between the optical absorption spectrum (in particular, the plasmon resonance) and such particle properties as its dimensions or surrounding environment can prove fruitful for the use of the plasmon absorption as an analytical tool. The plasmon resonance has also had a great impact on the Raman spectrum of surface-adsorbed molecules and a large enhancement of the fluorescence quantum yield of gold nanorods is observed. Furthermore, following the changes in the plasmon absorption induced by excitation (heating) with ultrashort laser pulses allows one to monitor the electron dynamics (electron-electron and electron-phonon interactions) in real time, which is important in understanding such fundamental questions regarding the thermal and electrical conductivity of these nanoparticles. Very intense heating with laser pulses leads to structural changes of the nanoparticles (nuclear rearrangements in the form of melting and fragmentation). ABSTRACT FROM AUTHOR Copyright of International Reviews in Physical Chemistry is the property of Taylor \& Francis Ltd and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts)},
690 Abstract1 = {Driven by the search for new materials with interesting and unique properties and also by the fundamental question of how atomic and molecular physical behaviour develops with increasing size, the field of nanoparticle research has grown immensely in the last two decades. Partially for these reasons, colloidal solutions of metallic (especially silver and gold) nanoparticles have long fascinated scientists because of their very intense colours. The intense red colour of colloidal gold nanoparticles is due to their surface plasmon absorption. This article describes the physical origin of the surface plasmon absorption in gold nanoparticles with emphasis on the Mie and also the Maxwell-Garnett theory and reviews the effects of particle size and shape on the resonance condition. A better understanding of the relationship between the optical absorption spectrum (in particular, the plasmon resonance) and such particle properties as its dimensions or surrounding environment can prove fruitful for the use of the plasmon absorption as an analytical tool. The plasmon resonance has also had a great impact on the Raman spectrum of surface-adsorbed molecules and a large enhancement of the fluorescence quantum yield of gold nanorods is observed. Furthermore, following the changes in the plasmon absorption induced by excitation (heating) with ultrashort laser pulses allows one to monitor the electron dynamics (electron-electron and electron-phonon interactions) in real time, which is important in understanding such fundamental questions regarding the thermal and electrical conductivity of these nanoparticles. Very intense heating with laser pulses leads to structural changes of the nanoparticles (nuclear rearrangements in the form of melting and fragmentation). ABSTRACT FROM AUTHOR Copyright of International Reviews in Physical Chemistry is the property of Taylor \& Francis Ltd and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts)},
691 Annote = {Accession Number: 3844873; Link, Stephan 1 El-Sayed, Mostafa A. 1; Affiliations: 1: Laser Dynamics Laboratory, School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, GA 30332-0400, USA; Source Information: Jul/Sep2000, Vol. 19 Issue 3, p409; Subject Term: MOLECULAR structure; Subject Term: NANOPARTICLES; Number of Pages: 45p; Document Type: Article},
692 Author = {Link, Stephan and El-Sayed, Mostafa A.},
693 Date-Added = {2007-09-07 16:21:48 -0400},
694 Date-Modified = {2007-09-07 16:21:55 -0400},
695 Isbn = {0144235X},
696 J1 = {International Reviews in Physical Chemistry},
697 Journal = {International Reviews in Physical Chemistry},
698 Journal1 = {International Reviews in Physical Chemistry},
699 Keywords = {MOLECULAR structure; NANOPARTICLES},
700 Local-Url = {file://localhost/Users/charles/Documents/Papers/3844873.pdf},
701 M3 = {Article},
702 Number = {3},
703 Pages = {409--453},
704 Publisher = {Taylor \& Francis Ltd},
705 Title = {Shape and size dependence of radiative, non-radiative and photothermal properties of gold nanocrystals.},
706 Ty = {JOUR},
707 Url = {http://search.ebscohost.com/login.aspx?direct=true&AuthType=ip,url,uid,cookie&db=afh&AN=3844873&site=ehost-live},
708 Volume = {19},
709 Year = {2000}}
710
711 @article{BROOKS:1985kx,
712 Author = {BROOKS, CL and BRUNGER, A and KARPLUS, M},
713 Date-Added = {2007-09-06 15:55:51 -0400},
714 Date-Modified = {2007-09-06 15:56:44 -0400},
715 Journal = {Biopolymers},
716 Pages = {843-865},
717 Title = {ACTIVE-SITE DYNAMICS IN PROTEIN MOLECULES - A STOCHASTIC BOUNDARY MOLECULAR-DYNAMICS APPROACH},
718 Volume = {24},
719 Year = {1985}}
720
721 @article{BRUNGER:1984fj,
722 Author = {BRUNGER, A and BROOKS, CL and KARPLUS, M},
723 Date-Added = {2007-09-06 15:55:51 -0400},
724 Date-Modified = {2007-09-06 15:56:36 -0400},
725 Journal = {Chemical Physics Letters},
726 Pages = {495-500},
727 Title = {STOCHASTIC BOUNDARY-CONDITIONS FOR MOLECULAR-DYNAMICS SIMULATIONS OF ST2 WATER},
728 Volume = {105},
729 Year = {1984}}
730
731 @article{BROOKS:1983uq,
732 Author = {BROOKS, CL and KARPLUS, M},
733 Date-Added = {2007-09-06 15:55:51 -0400},
734 Date-Modified = {2007-09-06 15:56:24 -0400},
735 Journal = {Journal of Chemical Physics},
736 Pages = {6312-6325},
737 Title = {DEFORMABLE STOCHASTIC BOUNDARIES IN MOLECULAR-DYNAMICS},
738 Volume = {79},
739 Year = {1983}}
740
741 @book{Strandburg:1992qy,
742 Address = {New York},
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756 245 00 $aBond-orientational order in condensed matter systems /$cKatherine J. Strandburg, editor ; foreword by David R. Nelson.
757 260 $aNew York :$bSpringer-Verlag,$c1992.
758 300 $axi, 388 p. :$bill. ;$c25 cm.
759 440 0 $aPartially ordered systems
760 504 $aIncludes bibliographical references and index.
761 650 0 $aCondensed matter.
762 650 0 $aCrystals.
763 650 0 $aGlass.
764 650 0 $aPhase transformations (Statistical physics)
765 700 1 $aStrandburg, Katherine Jo,$d1957-
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768 Author = {Strandburg, Katherine Jo},
769 Call-Number = {QC173.4.C65},
770 Date-Added = {2007-09-06 15:29:04 -0400},
771 Date-Modified = {2007-09-06 15:29:37 -0400},
772 Dewey-Call-Number = {530.4/1},
773 Genre = {Condensed matter},
774 Isbn = {0387976388 (U.S. : alk. paper)},
775 Library-Id = {91020237},
776 Publisher = {Springer-Verlag},
777 Title = {Bond-orientational order in condensed matter systems},
778 Year = {1992}}
779
780 @book{Kittel:1996fk,
781 Address = {New York},
782 Annote = {LDR 01170cam 2200289 a 4500
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794 100 1 $aKittel, Charles.
795 245 10 $aIntroduction to solid state physics /$cCharles Kittel.
796 250 $a7th ed.
797 260 $aNew York :$bWiley,$cc1996.
798 300 $axi, 673 p. :$bill. ;$c25 cm.
799 504 $aIncludes bibliographical references and index.
800 650 0 $aSolid state physics.
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802 856 4 $3Table of Contents only$uhttp://www.loc.gov/catdir/toc/onix03/95018445.html
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805 },
806 Author = {Kittel, Charles},
807 Call-Number = {QC176},
808 Date-Added = {2007-09-06 15:23:29 -0400},
809 Date-Modified = {2007-09-06 15:25:11 -0400},
810 Dewey-Call-Number = {530.4/1},
811 Edition = {7th ed},
812 Genre = {Solid state physics},
813 Isbn = {0471111813 (alk. paper)},
814 Library-Id = {95018445},
815 Publisher = {Wiley},
816 Title = {Introduction to solid state physics},
817 Url = {http://www.loc.gov/catdir/description/wiley033/95018445.html},
818 Year = {1996}}
819
820 @misc{Hartland:2003lr,
821 Abstract = {Laser excitation of metal nanoparticles can provide enough energy to melt or even fragment the particles. In this article we describe some recent experiments where controlled laser excitation was used to transform core-shell bimetallic particles into the corresponding alloy. Results for Au-Ag particles in solution and in a thin film are presented. Details are given about the excitation energies needed for alloying and how interdiffusion and alloying occur in nanoparticles. The spectral and dynamical properties of bimetallic particles are also discussed - especially as they pertain to our experiments.},
822 Author = {Hartland, GV and Guillaudeu, S and Hodak, JH},
823 Date-Added = {2007-09-06 15:19:25 -0400},
824 Date-Modified = {2007-09-06 15:19:59 -0400},
825 Note = {Molecules As Components of Electronic Devices},
826 Pages = {106-122},
827 Series = {ACS SYMPOSIUM SERIES},
828 Title = {Laser-induced alloying in metal nanoparticles: Controlling spectral properties with light},
829 Volume = {844},
830 Year = {2003}}
831
832 @article{HengleinA._jp992950g,
833 Affiliation = {Radiation Laboratory, University of Notre Dame, Notre Dame, Indiana 46556},
834 Author = {Henglein, A.},
835 Date-Added = {2007-09-06 15:01:20 -0400},
836 Date-Modified = {2007-09-06 15:01:27 -0400},
837 Issn = {1520-6106},
838 Journal = {Journal of Physical Chemistry B},
839 Local-Url = {file://localhost/Users/charles/Documents/Papers/jp992950g.pdf},
840 Number = {6},
841 Pages = {1206-1211},
842 Title = {Formation and Absorption Spectrum of Copper Nanoparticles from the Radiolytic Reduction of Cu(CN)2-},
843 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/jp992950g},
844 Volume = {104},
845 Year = {2000}}
846
847 @article{Petrova:2007qy,
848 Abstract = {This paper describes our recent time-resolved spectroscopy studies of the properties of gold particles at high laser excitation levels. In these experiments, an intense pump laser pulse rapidly heats the particle, creating very high lattice temperatures - up to the melting point of bulk gold. These high temperatures can have dramatic effects on the particle and the surroundings. The lattice temperature created is determined by observing the coherently excited the vibrational modes of the particles. The periods of these modes depend on temperature, thus, they act as an internal thermometer. We have used these experiments to provide values for the threshold temperatures for explosive boiling of the solvent surrounding the particles, and laser induced structural transformations in non-spherical particles. The results of these experiments are relevant to the use of metal nanoparticles in photothermal therapy, where laser induced heating is used to selectively kill cells.},
849 Author = {Petrova, Hristina and Hu, Min and Hartland, Gregory V.},
850 Date-Added = {2007-09-06 14:47:57 -0400},
851 Date-Modified = {2007-09-06 14:49:36 -0400},
852 Doi = {DOI 10.1524/zpch.2007.221.3.361},
853 Journal = {Zeitschrift Fur Physikalische Chemie-International Journal of Research In Physical Chemistry \& Chemical Physics},
854 Keywords = {metal nanoparticles; phonon modes; photothermal properties; laser-induced heating},
855 Pages = {361-376},
856 Title = {Photothermal properties of gold nanoparticles},
857 Volume = {221},
858 Year = {2007}}
859
860 @article{Hartland:2004fk,
861 Author = {Gregory V. Hartland},
862 Date-Added = {2007-09-06 14:34:21 -0400},
863 Date-Modified = {2007-09-06 14:37:40 -0400},
864 Journal = {Physical Chemistry Chemical Physics},
865 Local-Url = {file://localhost/Users/charles/Documents/Papers/b413368d.pdf},
866 Number = {23},
867 Pages = {5263-5274},
868 Title = {Measurements of the material properties of metal nanoparticles by time-resolved spectroscopy},
869 Volume = {6},
870 Year = {2004}}
871
872 @article{Qi:2001nn,
873 Author = {Yue Qi and Tahir Cagin and William L. Johnson and William A. Goddard III},
874 Date-Added = {2007-09-06 13:34:45 -0400},
875 Date-Modified = {2007-09-06 13:34:45 -0400},
876 Journal = {The Journal of Chemical Physics},
877 Keywords = {melting; freezing; crystallisation; nickel; nanostructured materials; metal clusters},
878 Local-Url = {file://localhost/Users/charles/Documents/Papers/Qi/2001.pdf},
879 Number = {1},
880 Pages = {385-394},
881 Publisher = {AIP},
882 Title = {Melting and crystallization in Ni nanoclusters: The mesoscale regime},
883 Url = {http://link.aip.org/link/?JCP/115/385/1},
884 Volume = {115},
885 Year = {2001}}
886
887 @article{Cleveland:1997jb,
888 Author = {Charles L. Cleveland and Uzi Landman and Thomas G. Schaaff and Marat N. Shafigullin and Peter W. Stephens and Robert L. Whetten},
889 Date-Added = {2007-09-06 13:34:10 -0400},
890 Date-Modified = {2007-09-06 13:34:10 -0400},
891 Journal = {Phys. Rev. Lett.},
892 Local-Url = {file://localhost/Users/charles/Documents/Papers/Cleveland/1997a.pdf},
893 Pages = {1873-1876},
894 Title = {Structural Evolution of Smaller Gold Nanocrystals: The Truncated Decahedral Motif},
895 Volume = {79},
896 Year = {1997}}
897
898 @article{Roy:2003dy,
899 Author = {R.K. Roy and S.K. Mandal and A.K. Pal},
900 Date-Added = {2007-09-06 13:32:38 -0400},
901 Date-Modified = {2007-09-06 13:32:38 -0400},
902 Journal = {Eur. Phys. J. B},
903 Local-Url = {file://localhost/Users/charles/Documents/Papers/Roy/2003.pdf},
904 Pages = {109-114},
905 Title = {Effect of interfacial alloying on the surface plasmon resonance of nanocrystalline Au-Ag multilayer thin films},
906 Volume = {33},
907 Year = {2003}}
908
909 @article{gonzalo:5163,
910 Author = {J. Gonzalo and D. Babonneau and C. N. Afonso and J.-P. Barnes},
911 Date-Added = {2007-09-06 13:32:05 -0400},
912 Date-Modified = {2007-09-06 13:32:05 -0400},
913 Journal = {Journal of Applied Physics},
914 Keywords = {alumina; silver; copper; nanocomposites; metallic thin films; pulsed laser deposition; surface plasmon resonance; spectral line shift; nucleation; visible spectra; electron diffraction; electron microscopy},
915 Local-Url = {file://localhost/Users/charles/Documents/Papers/Gonzalo/2004.pdf},
916 Number = {9},
917 Pages = {5163-5168},
918 Publisher = {AIP},
919 Title = {Optical response of mixed Ag-Cu nanocrystals produced by pulsed laser deposition},
920 Url = {http://link.aip.org/link/?JAP/96/5163/1},
921 Volume = {96},
922 Year = {2004}}
923
924 @article{Kim:2003lv,
925 Author = {M. Kim and H. Na and K. C. Lee and E. A. Yoo and M. Lee},
926 Date-Added = {2007-09-06 13:31:15 -0400},
927 Date-Modified = {2007-09-06 13:31:15 -0400},
928 Journal = {J. Mat. Chem},
929 Number = {7},
930 Pages = {1789-1792},
931 Title = {Preperation and characterization of Au-Ag and Au-Cu alloy nanoparticles in chloroform.},
932 Volume = {13},
933 Year = {2003}}
934
935 @article{Malyavantham:2004cu,
936 Author = {Malyavantham, Gokul and O'Brien, Daniel T. and Becker, Michael F. and Keto, John W. and Kovar, Desiderio},
937 Date-Added = {2007-09-06 13:30:22 -0400},
938 Date-Modified = {2007-09-06 13:30:22 -0400},
939 Journal = {Journal of Nanoparticle Research},
940 Local-Url = {file://localhost/Users/charles/Documents/Papers/Malyavantham/2004.pdf},
941 Number = {6},
942 Pages = {661 --664},
943 Title = {Au-Cu nanoparticles produced by laser ablation of mixtures of Au and Cu microparticles},
944 Ty = {JOUR},
945 Url = {http://www.springerlink.com/openurl.asp?genre=article\& id=doi:10.1007/s11051-004-3212-z},
946 Volume = {6},
947 Year = {2004}}
948
949 @article{Ludwig:2003lr,
950 Address = {Physikalische Chemie, Fachbereich Chemie, Universitat Dortmund, Otto-Hahn-Strasse 6, 44221 Dortmund, Germany. ludwig@pc2a.chemie.uni-dortmund.de},
951 Au = {Ludwig, R},
952 Author = {Ludwig, Ralf},
953 Da = {20030805},
954 Date-Added = {2007-07-16 17:00:26 -0400},
955 Date-Modified = {2007-07-16 17:00:26 -0400},
956 Dcom = {20040511},
957 Doi = {10.1002/anie.200301658},
958 Edat = {2003/08/06 05:00},
959 Issn = {1433-7851 (Print)},
960 Jid = {0370543},
961 Journal = {Angew Chem Int Ed Engl},
962 Jt = {Angewandte Chemie (International ed. in English)},
963 Language = {eng},
964 Lr = {20070119},
965 Mhda = {2003/08/06 05:01},
966 Number = {30},
967 Own = {NLM},
968 Pages = {3458--3460},
969 Pl = {Germany},
970 Pmid = {12900957},
971 Pst = {ppublish},
972 Pt = {Journal Article},
973 Pubm = {Print},
974 So = {Angew Chem Int Ed Engl. 2003 Aug 4;42(30):3458-60.},
975 Stat = {PubMed-not-MEDLINE},
976 Title = {How does water bind to metal surfaces: hydrogen atoms up or hydrogen atoms down?},
977 Volume = {42},
978 Year = {2003}}
979
980 @article{SpohrE._j100353a043,
981 Author = {Spohr, E.},
982 Date-Added = {2007-07-16 16:44:34 -0400},
983 Date-Modified = {2007-07-16 16:45:17 -0400},
984 Issn = {0022-3654},
985 Journal = {Journal of Physical Chemistry},
986 Local-Url = {file://localhost/Users/charles/Documents/Papers/Spohr/1989.pdf},
987 Number = {16},
988 Pages = {6171-6180},
989 Title = {Computer simulation of the water/platinum interface},
990 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/j100353a043},
991 Volume = {93},
992 Year = {1989}}
993
994 @article{kay:5120,
995 Author = {Bruce D. Kay and Keith R. Lykke and J. Randall Creighton and Stephen J. Ward},
996 Date-Added = {2007-07-16 14:10:25 -0400},
997 Date-Modified = {2007-07-16 14:10:38 -0400},
998 Doi = {10.1063/1.457606},
999 Journal = {The Journal of Chemical Physics},
1000 Keywords = {CHEMISORPTION; CHEMICAL BONDS; AMMONIA; HYDROFLUORIC ACID; WATER; GOLD; SORPTIVE PROPERTIES; LOW TEMPERATURE; DESORPTION; ADSORBATES; HYDROGEN BONDS; DESORPTION SPECTROSCOPY},
1001 Local-Url = {file://localhost/Users/charles/Documents/Papers/Kay/1989.pdf},
1002 Number = {8},
1003 Pages = {5120-5121},
1004 Publisher = {AIP},
1005 Title = {The influence of adsorbate--absorbate hydrogen bonding in molecular chemisorption: NH[sub 3], HF, and H[sub 2]O on Au(111)},
1006 Url = {http://link.aip.org/link/?JCP/91/5120/1},
1007 Volume = {91},
1008 Year = {1989}}
1009
1010 @article{MahaffyR._jp962281w,
1011 Affiliation = {Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802},
1012 Author = {Mahaffy, R. and Bhatia, R. and Garrison, B.J.},
1013 Date-Added = {2007-07-05 12:36:54 -0400},
1014 Date-Modified = {2007-07-05 12:37:01 -0400},
1015 Issn = {1520-6106},
1016 Journal = {Journal of Physical Chemistry B},
1017 Local-Url = {file://localhost/Users/charles/Documents/Papers/Mahaffy/1997.pdf},
1018 Number = {5},
1019 Pages = {771-773},
1020 Title = {Diffusion of a Butanethiolate Molecule on a Au{111} Surface},
1021 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/jp962281w},
1022 Volume = {101},
1023 Year = {1997}}
1024
1025 @article{LuedtkeW.D._jp981745i,
1026 Affiliation = {School of Physics, Georgia Institute of Technology, Atlanta, Georgia 30332-0430},
1027 Author = {Luedtke, W.D. and Landman, U.},
1028 Date-Added = {2007-07-05 12:13:33 -0400},
1029 Date-Modified = {2007-07-05 12:13:42 -0400},
1030 Issn = {1520-6106},
1031 Journal = {Journal of Physical Chemistry B},
1032 Local-Url = {file://localhost/Users/charles/Documents/Papers/Luedtke/1998.pdf},
1033 Number = {34},
1034 Pages = {6566-6572},
1035 Title = {Structure and Thermodynamics of Self-Assembled Monolayers on Gold Nanocrystallites},
1036 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/jp981745i},
1037 Volume = {102},
1038 Year = {1998}}
1039
1040 @article{LuedtkeW.D._jp961721g,
1041 Affiliation = {School of Physics, Georgia Institute of Technology, Atlanta, Georgia 30332},
1042 Author = {Luedtke, W.D. and Landman, U.},
1043 Date-Added = {2007-07-05 12:06:28 -0400},
1044 Date-Modified = {2007-07-05 12:07:32 -0400},
1045 Issn = {0022-3654},
1046 Journal = {Journal of Physical Chemistry},
1047 Local-Url = {file://localhost/Users/charles/Documents/Papers/Luedtke/1996.pdf},
1048 Number = {32},
1049 Pages = {13323-13329},
1050 Title = {Structure, Dynamics, and Thermodynamics of Passivated Gold Nanocrystallites and Their Assemblies},
1051 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/jp961721g},
1052 Volume = {100},
1053 Year = {1996}}
1054
1055 @article{0957-4484-17-18-037,
1056 Abstract = {Molecular dynamics simulations are used to investigate the microstructures of Cu\–Ni nanoparticles with different concentrations of oversized atoms added to them. A many body second moment tight binding approximation potential is adopted to model the interatomic interactions. The Honeycutt\–Anderson (HA) pair analysis technique is adopted to analyse in detail the transformation between local structures at different temperatures. From the simulation results, at temperatures higher than the melting point, the nanoparticles are in a liquid state and an icosahedral local structure is most frequently found inside the nanoparticles. At temperatures beneath the melting point, the fraction of FCC local structure increases with decreasing concentrations of the larger size atoms, whereas a larger fraction of amorphous structure still remains in the solid state for higher concentrations of oversized atoms. This is because the effects of distortion and misfit are more significant for a nanoparticle having a higher concentration of oversized atoms. },
1057 Author = {Shin-Pon Ju and Cheng-I Weng and Yi-Yun Chang and Yung-Yun Chen},
1058 Date-Added = {2007-07-02 01:26:44 -0400},
1059 Date-Modified = {2007-07-02 01:26:56 -0400},
1060 Journal = {Nanotechnology},
1061 Local-Url = {file://localhost/Users/charles/Documents/Papers/Ju/2006.pdf},
1062 Number = {18},
1063 Pages = {4748-4757},
1064 Title = {The effect of added oversized elements on the microstructure of binary alloy nanoparticles},
1065 Url = {http://stacks.iop.org/0957-4484/17/4748},
1066 Volume = {17},
1067 Year = {2006}}
1068
1069 @article{Miracle:2006qy,
1070 Author = {Miracle, D. B.},
1071 Date-Added = {2007-07-01 16:38:41 -0400},
1072 Date-Modified = {2007-07-01 16:38:59 -0400},
1073 Journal = {Acta Materialia},
1074 Keywords = {Metallic glasses; Atomic structure; Modeling},
1075 Local-Url = {file://localhost/Users/charles/Documents/Papers/Miracle/2006.pdf},
1076 Number = {16},
1077 Pages = {4317--4336},
1078 Title = {The efficient cluster packing model - An atomic structural model for metallic glasses},
1079 Ty = {JOUR},
1080 Url = {http://www.sciencedirect.com/science/article/B6TW8-4KKFPJ4-1/2/3bbef4be6c2fefecca2370b67cc5f7e2},
1081 Volume = {54},
1082 Year = {2006}}
1083
1084 @article{Manai:2007fk,
1085 Author = {Manai, G. and Delogu, F.},
1086 Date-Added = {2007-07-01 16:29:22 -0400},
1087 Date-Modified = {2007-07-01 16:29:49 -0400},
1088 Journal = {Physica B: Condensed Matter},
1089 Keywords = {Molecular dynamics; Melting; Bulk metal; Nanocrystalline metal; Kinetics},
1090 Local-Url = {file://localhost/Users/charles/Documents/Papers/Manai/2007.pdf},
1091 Number = {1-2},
1092 Pages = {288--297},
1093 Title = {Numerical simulations of the melting behavior of bulk and nanometer-sized Cu systems},
1094 Ty = {JOUR},
1095 Url = {http://www.sciencedirect.com/science/article/B6TVH-4MMFJ3P-1/2/23cfabe81d2b2b75cf1322fff7438ea0},
1096 Volume = {392},
1097 Year = {2007}}
1098
1099 @article{Iwamatsu:2007lr,
1100 Author = {Iwamatsu, Masao},
1101 Date-Added = {2007-07-01 16:17:54 -0400},
1102 Date-Modified = {2007-07-01 16:18:30 -0400},
1103 Journal = {Materials Science and Engineering: A},
1104 Keywords = {Binary cluster; Icosahedral cluster; Binary alloy; Glass; Undercooled liquid},
1105 Local-Url = {file://localhost/Users/charles/Documents/Papers/Iwamatsu/2007.pdf},
1106 Pages = {975--978},
1107 Title = {Icosahedral binary clusters of glass-forming Lennard-Jones binary alloy},
1108 Title1 = {Proceedings of the 12th International Conference on Rapidly Quenched \& Metastable Materials},
1109 Ty = {JOUR},
1110 Url = {http://www.sciencedirect.com/science/article/B6TXD-4KPP4D7-12/2/068458774eaf66383a5a3eefe2118657},
1111 Volume = {449-451},
1112 Year = {2007}}
1113
1114 @article{HoneycuttJ.Dana_j100303a014,
1115 Author = {Honeycutt, J. Dana and Andersen, Hans C.},
1116 Date-Added = {2007-07-01 13:21:04 -0400},
1117 Date-Modified = {2007-07-01 13:21:24 -0400},
1118 Issn = {0022-3654},
1119 Journal = {Journal of Physical Chemistry},
1120 Local-Url = {file://localhost/Users/charles/Documents/Papers/Honeycutt/1987.pdf},
1121 Number = {19},
1122 Pages = {4950-4963},
1123 Title = {Molecular dynamics study of melting and freezing of small Lennard-Jones clusters},
1124 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/j100303a014},
1125 Volume = {91},
1126 Year = {1987}}
1127
1128 @article{PhysRevLett.60.2295,
1129 Author = {J\'onsson, Hannes and Andersen, Hans C.},
1130 Date-Added = {2007-07-01 13:05:37 -0400},
1131 Date-Modified = {2007-07-01 13:06:07 -0400},
1132 Doi = {10.1103/PhysRevLett.60.2295},
1133 Journal = {Phys. Rev. Lett.},
1134 Local-Url = {file://localhost/Users/charles/Documents/Papers/J%5C'onsson/1988.pdf},
1135 Month = {May},
1136 Number = {22},
1137 Numpages = {3},
1138 Pages = {2295--2298},
1139 Publisher = {American Physical Society},
1140 Title = {Icosahedral Ordering in the Lennard-Jones Liquid and Glass},
1141 Volume = {60},
1142 Year = {1988}}
1143
1144 @article{Buscaglia:1997fk,
1145 Author = {Gustavo C. Buscaglia and Enzo A. Dari},
1146 Date-Added = {2007-06-15 13:34:55 -0400},
1147 Date-Modified = {2007-06-15 13:37:30 -0400},
1148 Journal = {International Journal for Numerical Methods in Engineering},
1149 Local-Url = {file://localhost/Users/charles/Documents/Papers/Buscaglia/1997.pdf},
1150 Number = {22},
1151 Pages = {4119-4136},
1152 Title = {Anisotropic mesh optimization and its application in adaptivity},
1153 Volume = {40},
1154 Year = {1997}}
1155
1156 @article{Guymon:2005fk,
1157 Author = {C.G. Guymon and R.L. Rowley and J. N. Harb and D.R. Wheeler},
1158 Date-Added = {2007-06-07 14:31:36 -0400},
1159 Date-Modified = {2007-06-07 14:34:21 -0400},
1160 Journal = {Condensed Matter Physics},
1161 Local-Url = {file://localhost/Users/charles/Documents/Papers/Guymon/2005.pdf},
1162 Number = {2},
1163 Pages = {335-356},
1164 Title = {Simulating an electrochemical interface using charge dynamics},
1165 Volume = {8},
1166 Year = {2005}}
1167
1168 @article{MURRAY:1984lr,
1169 Author = {Murray, J. L.},
1170 Date-Added = {2007-05-16 15:08:28 -0400},
1171 Date-Modified = {2007-05-16 15:17:54 -0400},
1172 Isi = {ISI:A1984SC15900002},
1173 Issn = {0360-2133},
1174 Journal = {Metall Trans},
1175 Number = {2},
1176 Pages = {261-268},
1177 Publication-Type = {J},
1178 Title = {CALCULATIONS OF STABLE AND METASTABLE EQUILIBRIUM DIAGRAMS OF THE AG-CU AND CD-ZN SYSTEMS},
1179 Volume = {15},
1180 Year = {1984}}
1181
1182 @misc{kimura-quantum,
1183 Author = {Y. Kimura and T. Cagin},
1184 Date-Added = {2007-05-15 16:46:32 -0400},
1185 Date-Modified = {2007-05-15 17:56:21 -0400},
1186 Local-Url = {file://localhost/Users/charles/Documents/Papers/Goddard%20III/51.pdf},
1187 Text = {Y. Kimura, T. Cagin, and W. A. Goddard III, The Quantum Sutton-Chen ManyBody Potential for Properties of FCC metals, Phys. Rev., to be submitted.},
1188 Title = {The Quantum Sutton-Chen ManyBody Potential for Properties of FCC metals},
1189 Url = {citeseer.ist.psu.edu/150963.html}}
1190
1191 @article{neubauer:046106,
1192 Author = {H. Neubauer and S. G. Mayr},
1193 Date-Added = {2007-05-10 17:42:37 -0400},
1194 Date-Modified = {2007-05-10 17:49:52 -0400},
1195 Eid = {046106},
1196 Journal = {Journal of Applied Physics},
1197 Keywords = {copper alloys; gold alloys; nanostructured materials; metal clusters; liquid alloys; molecular dynamics method; surface energy; fluctuations; rotation},
1198 Local-Url = {file://localhost/Users/charles/Documents/Papers/Neubauer/2007.pdf},
1199 Number = {4},
1200 Numpages = {3},
1201 Pages = {046106},
1202 Publisher = {AIP},
1203 Title = {Dealloying of liquid CuAu nanoclusters during rotary motion: A molecular dynamics study},
1204 Url = {http://link.aip.org/link/?JAP/101/046106/1},
1205 Volume = {101},
1206 Year = {2007}}
1207
1208 @article{0965-0393-7-2-005,
1209 Abstract = {The multilayer relaxation at (100), (110), (111), (210), (211), (310), (311) and (331) surfaces of the fcc metals Cu, Ag, Au, Ni, Pd, Pt, Al and Pb are calculated using the modified embedded atom method. The `anomalous' outward relaxation at Al (100), (111), Pt (111), and Cu (111) surfaces is described correctly. The relief of surface stress and tension on the relaxation is studied on (111), (100) and (110) surfaces. In general, the surface stress in the direction of the surface normal determines the relaxation direction except for the Al (110) surface. When the surface stress is negative, the surface relaxation is inward; otherwise, the relaxation is outward. An interesting result is that the surface tension does not always decrease after relaxation. The outward relaxation will induce the increase in surface tension while the inward relaxation induces the decrease in surface tension. },
1210 Author = {Jun Wan and Y L Fan and D W Gong and S G Shen and X Q Fan},
1211 Date-Added = {2007-05-08 16:04:42 -0400},
1212 Date-Modified = {2007-05-08 16:04:50 -0400},
1213 Journal = {Modelling and Simulation in Materials Science and Engineering},
1214 Local-Url = {file://localhost/Users/charles/Documents/Papers/Wan/1999.pdf},
1215 Number = {2},
1216 Pages = {189-206},
1217 Title = {Surface relaxation and stress of fcc metals: Cu, Ag, Au, Ni, Pd, Pt, Al and Pb},
1218 Url = {http://stacks.iop.org/0965-0393/7/189},
1219 Volume = {7},
1220 Year = {1999}}
1221
1222 @article{Chen:2001qy,
1223 Author = {Chen, M. and Yang, C. and Guo, Z. Y.},
1224 Date-Added = {2007-05-08 15:48:11 -0400},
1225 Date-Modified = {2007-05-08 15:48:22 -0400},
1226 Journal = {International Journal of Thermophysics},
1227 Local-Url = {file://localhost/Users/charles/Documents/Papers/fulltext.pdf},
1228 M3 = {10.1023/A:1010632813438},
1229 Number = {4},
1230 Pages = {1295--1302},
1231 Title = {Surface Tension of Ni-Cu Alloys: A Molecular Simulation Approach},
1232 Ty = {JOUR},
1233 Url = {http://dx.doi.org/10.1023/A:1010632813438},
1234 Volume = {22},
1235 Year = {2001}}
1236
1237 @article{Bondi:1964fk,
1238 Author = {A. Bondi},
1239 Date-Added = {2007-05-08 14:44:17 -0400},
1240 Date-Modified = {2007-05-08 14:45:19 -0400},
1241 Journal = {J. Phys. Chem.},
1242 Number = {3},
1243 Pages = {441-451},
1244 Title = {van der Waals Volumes and Radii},
1245 Volume = {63},
1246 Year = {1964}}
1247
1248 @article{0957-0233-16-2-015,
1249 Abstract = {It is usually known that the surface tension of liquid metals and alloys decreases with increasing temperature, i.e., the temperature dependence of the surface tension is negative. We found, however, that some liquid alloys, which have large difference of the surface tension of pure components, show positive temperature dependence in certain composition ranges. Some Pb-free alloys, for which information on the surface tension is indispensable to be developed as environmental-friendly material, can be listed in this special category. The experimental results and the thermodynamic analysis of the temperature dependence of those alloys are discussed in the paper. },
1250 Author = {Joonho Lee and Wataru Shimoda and Toshihiro Tanaka},
1251 Date-Added = {2007-05-08 13:32:00 -0400},
1252 Date-Modified = {2007-05-08 13:32:14 -0400},
1253 Journal = {Measurement Science and Technology},
1254 Local-Url = {file://localhost/Users/charles/Documents/Papers/mst5_2_015.pdf},
1255 Number = {2},
1256 Pages = {438-442},
1257 Title = {Temperature dependence of surface tension of liquid Sn\–Ag, In\–Ag and In\–Cu alloys},
1258 Url = {http://stacks.iop.org/0957-0233/16/438},
1259 Volume = {16},
1260 Year = {2005}}
1261
1262 @article{PhysRevLett.75.4043,
1263 Author = {Egry, Ivan and Lohoefer, Georg and Jacobs, Gerd},
1264 Date-Added = {2007-05-08 13:24:35 -0400},
1265 Date-Modified = {2007-05-08 13:24:35 -0400},
1266 Doi = {10.1103/PhysRevLett.75.4043},
1267 Journal = {Phys. Rev. Lett.},
1268 Month = {Nov},
1269 Number = {22},
1270 Numpages = {3},
1271 Pages = {4043--4046},
1272 Publisher = {American Physical Society},
1273 Title = {Surface Tension of Liquid Metals: Results from Measurements on Ground and in Space},
1274 Volume = {75},
1275 Year = {1995}}
1276
1277 @article{mendez-villuendas:185503,
1278 Author = {Eduardo Mendez-Villuendas and Richard K. Bowles},
1279 Date-Added = {2007-05-08 13:19:27 -0400},
1280 Date-Modified = {2007-05-08 13:19:42 -0400},
1281 Eid = {185503},
1282 Journal = {Physical Review Letters},
1283 Local-Url = {file://localhost/Users/charles/Documents/Papers/PhysRevLett_98_185503.pdf},
1284 Number = {18},
1285 Numpages = {4},
1286 Pages = {185503},
1287 Publisher = {APS},
1288 Title = {Surface Nucleation in the Freezing of Gold Nanoparticles},
1289 Url = {http://link.aps.org/abstract/PRL/v98/e185503},
1290 Volume = {98},
1291 Year = {2007}}
1292
1293 @misc{garai-2006,
1294 Author = {Jozsef Garai},
1295 Date-Added = {2007-05-08 13:13:26 -0400},
1296 Date-Modified = {2007-05-08 13:13:38 -0400},
1297 Local-Url = {file://localhost/Users/charles/Documents/Papers/Surf_tension_vap.pdf},
1298 Title = {Atomic Model for the Latent Heat of Vaporization},
1299 Url = {http://www.citebase.org/abstract?id=oai:arXiv.org:physics/0611289},
1300 Year = {2006}}
1301
1302 @article{garai:023514,
1303 Author = {J. Garai and A. Laugier},
1304 Date-Added = {2007-05-08 13:08:58 -0400},
1305 Date-Modified = {2007-05-08 13:09:20 -0400},
1306 Eid = {023514},
1307 Journal = {Journal of Applied Physics},
1308 Keywords = {elastic moduli; thermal expansion; silver; gold; magnesium compounds; alumina; iron compounds; calcium compounds; sodium compounds; potassium compounds; high-pressure effects},
1309 Local-Url = {file://localhost/Users/charles/Documents/Papers/JApplPhys_101_023514.pdf},
1310 Number = {2},
1311 Numpages = {4},
1312 Pages = {023514},
1313 Publisher = {AIP},
1314 Title = {The temperature dependence of the isothermal bulk modulus at 1 bar pressure},
1315 Url = {http://link.aip.org/link/?JAP/101/023514/1},
1316 Volume = {101},
1317 Year = {2007}}
1318
1319 @article{PhysRevB.59.15990,
1320 Author = {Ruban, A. V. and Skriver, H. L. and N\o{}rskov, J. K.},
1321 Date-Added = {2007-05-07 11:33:33 -0400},
1322 Date-Modified = {2007-05-07 11:34:34 -0400},
1323 Doi = {10.1103/PhysRevB.59.15990},
1324 Journal = {Phys. Rev. B},
1325 Local-Url = {file://localhost/Users/charles/Documents/Papers/p15990_1.pdf},
1326 Month = {Jun},
1327 Number = {24},
1328 Numpages = {10},
1329 Pages = {15990--16000},
1330 Publisher = {American Physical Society},
1331 Title = {Surface segregation energies in transition-metal alloys},
1332 Volume = {59},
1333 Year = {1999}}
1334
1335 @article{Ramirez-Caballero:2006lr,
1336 Abstract = {Classical molecular dynamics (MD) simulations are used to investigate the effect of the nanocluster size on surface segregation phenomena of Pt alloys containing 10, 30, 50, 70 and 90{\%} Pd. Atomic distribution is examined in graphite-supported nanoclusters with approximate diameters of 2 and 4 nm, using a simulated annealing procedure with temperatures varying from 1200 down to 353 K. Following this annealing route, it is found that at concentrations of Pd below a certain threshold, Pt segregates to the surface, whereas Pd segregates to the surface when the overall concentration of Pd is above that threshold. Moreover, the threshold concentration depends on the size, being approximately 50{\%} for the 2 nm nanocluster and in the order of 60{\%} for the 4 nm nanocluster. It is also found that the percent of the surface enriched either in Pt or Pd at a given overall concentration, as well as the nature of the exposed crystallographic faces, depend significantly on the cluster size. Our studies suggest that surface segregation behavior in Pt{\^a}Pd supported nanoclusters is influenced by: differences in surface energies, interaction of the clusters with the substrate, and probably most importantly by the fabrication protocol. The implications of these issues on catalytic processes are discussed. ABSTRACT FROM AUTHOR Copyright of Molecular Simulation is the property of Taylor \& Francis Ltd and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts)},
1337 Author = {Ramirez Caballero, G. E. and Balbuena, P. B.},
1338 Date-Added = {2007-05-04 12:08:33 -0400},
1339 Date-Modified = {2007-05-17 16:14:32 -0400},
1340 Isbn = {08927022},
1341 Journal = {Molecular Simulation},
1342 Keywords = {ALLOYS; METALLIC composites; MOLECULAR dynamics; NANOPARTICLES; SURFACE chemistry; Molecular dynamics; Bimetallic particles},
1343 Local-Url = {file://localhost/Users/charles/Documents/Papers/Ramirez%20Caballero/2006.pdf},
1344 M3 = {Article},
1345 Number = {3/4},
1346 Pages = {297-303},
1347 Publisher = {Taylor \& Francis Ltd},
1348 Title = {Surface segregation phenomena in {P}t{P}d nanoparticles: dependence on nanocluster size.},
1349 Url = {http://search.ebscohost.com/login.aspx?direct=true&db=aph&AN=21894920&site=ehost-live},
1350 Volume = {32},
1351 Year = {2006}}
1352
1353 @article{sankaranarayanan:155441,
1354 Author = {Subramanian K. R. S. Sankaranarayanan and Venkat R. Bhethanabotla and Babu Joseph},
1355 Date-Added = {2007-05-04 12:01:22 -0400},
1356 Date-Modified = {2007-05-04 12:01:28 -0400},
1357 Eid = {155441},
1358 Journal = {Physical Review B (Condensed Matter and Materials Physics)},
1359 Keywords = {molecular dynamics method; melting; platinum alloys; palladium alloys; nanowires; surface segregation; specific heat; diffusion; surface structure; solid-state phase transformations; thermal stability; annealing},
1360 Local-Url = {file://localhost/Users/charles/Desktop/Papers/PhysRevB_74_155441.pdf},
1361 Number = {15},
1362 Numpages = {12},
1363 Pages = {155441},
1364 Publisher = {APS},
1365 Title = {Molecular dynamics simulation study of the melting and structural evolution of bimetallic Pd-Pt nanowires},
1366 Url = {http://link.aps.org/abstract/PRB/v74/e155441},
1367 Volume = {74},
1368 Year = {2006}}
1369
1370 @article{RuuskaH._jp031022l,
1371 Affiliation = {Department of Chemical Engineering, Brigham Young University, Provo, Utah 84602},
1372 Author = {Ruuska, H. and Pakkanen, T.A. and Rowley, R.L.},
1373 Date-Added = {2007-05-01 18:24:50 -0400},
1374 Date-Modified = {2007-05-01 18:25:03 -0400},
1375 Issn = {1520-6106},
1376 Journal = {Journal of Physical Chemistry B},
1377 Local-Url = {file://localhost/Users/charles/Documents/Papers/jp031022l.pdf},
1378 Number = {8},
1379 Pages = {2614-2619},
1380 Title = {MP2 Study on Water Adsorption on Cluster Models of Cu(111)},
1381 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/jp031022l},
1382 Volume = {108},
1383 Year = {2004}}
1384
1385 @book{Goldberg1989,
1386 Address = {Boston, MA, USA},
1387 Author = {David E. Goldberg},
1388 Date-Added = {2007-04-26 16:43:54 -0400},
1389 Date-Modified = {2007-04-26 16:44:19 -0400},
1390 Isbn = {0201157675},
1391 Publisher = {Addison-Wesley Longman Publishing Co., Inc.},
1392 Title = {Genetic Algorithms in Search, Optimization and Machine Learning},
1393 Year = {1989}}
1394
1395 @article{fennell:9175,
1396 Author = {Christopher J. Fennell and J. Daniel Gezelter},
1397 Date-Added = {2007-04-26 16:40:20 -0400},
1398 Date-Modified = {2007-04-26 16:40:53 -0400},
1399 Journal = {The Journal of Chemical Physics},
1400 Keywords = {molecular dynamics method; self-diffusion; ice; water; supercooling; liquid structure; liquid theory},
1401 Local-Url = {file://localhost/Users/charles/Documents/Papers/JChemPhys_120_9175.pdf},
1402 Number = {19},
1403 Pages = {9175-9184},
1404 Publisher = {AIP},
1405 Title = {On the structural and transport properties of the soft sticky dipole and related single-point water models},
1406 Url = {http://link.aip.org/link/?JCP/120/9175/1},
1407 Volume = {120},
1408 Year = {2004}}
1409
1410 @article{LiuY._jp952324t,
1411 Affiliation = {Departments of Biochemistry and Biophysics and of Chemistry, Washington State University, Pullman, Washington 99164-4660},
1412 Author = {Liu, Y. and Ichiye, T.},
1413 Date-Added = {2007-04-26 16:38:23 -0400},
1414 Date-Modified = {2007-04-26 16:38:54 -0400},
1415 Issn = {0022-3654},
1416 Journal = {Journal of Physical Chemistry},
1417 Local-Url = {file://localhost/Users/charles/Documents/Papers/jp952324t.pdf},
1418 Number = {7},
1419 Pages = {2723-2730},
1420 Title = {Soft Sticky Dipole Potential for Liquid Water: A New Model},
1421 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/jp952324t},
1422 Volume = {100},
1423 Year = {1996}}
1424
1425 @article{PhysRevB.33.7983,
1426 Author = {Foiles, S. M. and Baskes, M. I. and Daw, M. S.},
1427 Date-Added = {2007-04-24 19:12:57 -0400},
1428 Date-Modified = {2007-04-24 19:14:30 -0400},
1429 Doi = {10.1103/PhysRevB.33.7983},
1430 Journal = {Phys. Rev. B},
1431 Local-Url = {file://localhost/Users/charles/Documents/Papers/p7983_1.pdf},
1432 Month = {Jun},
1433 Number = {12},
1434 Numpages = {8},
1435 Pages = {7983--7991},
1436 Publisher = {American Physical Society},
1437 Title = {Embedded-atom-method functions for the fcc metals {C}u, {A}g, {A}u, {N}i, {P}d, {P}t, and their alloys},
1438 Volume = {33},
1439 Year = {1986}}
1440
1441 @url{Center:uq,
1442 Author = {http://www.qhull.org},
1443 Date-Added = {2007-04-24 18:04:23 -0400},
1444 Date-Modified = {2007-04-24 18:06:31 -0400},
1445 Title = {QHull},
1446 Url = {http://www.qhull.org},
1447 Urldate = {2007}}
1448
1449 @article{barber96quickhull,
1450 Author = {C. Bradford Barber and David P. Dobkin and Hannu Huhdanpaa},
1451 Date-Added = {2007-04-24 18:03:53 -0400},
1452 Date-Modified = {2007-04-24 18:03:53 -0400},
1453 Journal = {ACM Transactions on Mathematical Software},
1454 Number = {4},
1455 Pages = {469--483},
1456 Title = {The Quickhull Algorithm for Convex Hulls},
1457 Url = {citeseer.ist.psu.edu/article/barber95quickhull.html},
1458 Volume = {22},
1459 Year = {1996}}
1460
1461 @article{II:2007fk,
1462 Author = {Charles ~F. {Vardeman II} and J. Daniel Gezelter},
1463 Date-Added = {2007-04-24 17:54:43 -0400},
1464 Date-Modified = {2007-04-24 17:57:35 -0400},
1465 Journal = {In Preperation},
1466 Year = {2007}}
1467
1468 @article{HartlandG.V._jp0276092,
1469 Affiliation = {Department of Mathematics and Statistics, The University of Melbourne, Victoria 3010, Australia},
1470 Author = {Hartland, G.V. and Hu, M. and Sader, J.E.},
1471 Date-Added = {2007-04-24 17:45:57 -0400},
1472 Date-Modified = {2007-04-24 17:46:53 -0400},
1473 Issn = {1520-6106},
1474 Journal = {Journal of Physical Chemistry B},
1475 Local-Url = {file://localhost/Users/charles/Documents/Papers/jp0276092.pdf},
1476 Number = {30},
1477 Pages = {7472-7478},
1478 Title = {Softening of the Symmetric Breathing Mode in Gold Particles by Laser-Induced Heating},
1479 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/jp0276092},
1480 Volume = {107},
1481 Year = {2003}}
1482
1483 @book{Tu:1992uq,
1484 Author = {K. N. Tu and J. W. Mayer},
1485 Date-Added = {2007-04-24 17:27:23 -0400},
1486 Date-Modified = {2007-04-24 17:29:08 -0400},
1487 Publisher = {Macmillian: New York},
1488 Title = {Electronic Thin Film Science},
1489 Year = {1992}}
1490
1491 @article{Williams:1970fk,
1492 Author = {Graham Williams and David C. Watts},
1493 Date-Added = {2007-04-24 17:02:39 -0400},
1494 Date-Modified = {2007-04-24 17:50:10 -0400},
1495 Journal = {Trans. Faraday Soc.},
1496 Local-Url = {file://localhost/Users/charles/Documents/Papers/KWW%20paper.pdf},
1497 Pages = {80-85},
1498 Title = {Non-symmeric dielectric relaxation behaviour arising from a simple empirical decay function},
1499 Volume = {66},
1500 Year = {1970}}
1501
1502 @article{kumar:204508,
1503 Author = {V. Senthil Kumar and V. Kumaran},
1504 Date-Added = {2007-02-21 15:46:43 -0500},
1505 Date-Modified = {2007-02-21 15:47:50 -0500},
1506 Eid = {204508},
1507 Journal = {The Journal of Chemical Physics},
1508 Keywords = {freezing; nucleation; phase equilibrium; stacking faults},
1509 Local-Url = {file://localhost/Users/charles/Documents/Papers/Kumar/2006.pdf},
1510 Number = {20},
1511 Numpages = {11},
1512 Pages = {204508},
1513 Publisher = {AIP},
1514 Title = {Bond-orientational analysis of hard-disk and hard-sphere structures},
1515 Url = {http://link.aip.org/link/?JCP/124/204508/1},
1516 Volume = {124},
1517 Year = {2006}}
1518
1519 @article{http://dx.doi.org/10.1039/b312640b,
1520 Abstract = {We explore, with the use of extensive molecular dynamics simulations, several principal issues pertaining to the energetics of formation of superlattices made through the assembly of passivated nanoclusters, the interactions that underlie the cohesion of such superlattices, and the unique mechanical, thermal and structural properties that they exhibit. Our investigations focus on assemblies made of crystalline gold nanoclusters of variable sizes, passivated by monolayers of alkylthiol molecules. An analytic optimal packing model that correlates in a unified manner several structural characteristics of three-dimensional superlattice assemblies is developed. The model successfully organizes and systematizes a large amount of experimental and simulation data, and it predicts the phase-boundary between different superlattice structural motifs that evolve as a function of the ratio between the chain-length of the extended passivating molecules and the radius of the underlying gold nanocluster. The entropic contribution to the formation free energy of the superlattice assembly is found to be large and of similar magnitude as the potential energy component of the free energy. The major contribution to the cohesive potential energy of the superlattice is shown to originate from van der Waals interactions between molecules that passivate neighboring nanoclusters. The unique mechanical, thermal, thermomechanical, and thermostructural properties of passivated nanocluster assemblies, are discussed.},
1521 Author = {Uzi Landman and W. D. Luedtke},
1522 Date-Added = {2007-02-20 19:42:37 -0500},
1523 Date-Modified = {2007-02-20 19:43:02 -0500},
1524 Doi = {10.1039/b312640b},
1525 Journal = {Faraday Discussions},
1526 Local-Url = {file://localhost/Users/charles/Documents/Papers/Landman/2004.pdf},
1527 Pages = {1--22},
1528 Title = {Small is different: energetic, structural, thermal, and mechanical properties of passivated nanocluster assemblies},
1529 Url = {http://dx.doi.org/10.1039/b312640b},
1530 Volume = {125},
1531 Year = {2004}}
1532
1533 @article{PhysRevLett.89.275502,
1534 Author = {Nam, H.-S. and Hwang, Nong M. and Yu, B. D. and Yoon, J.-K.},
1535 Date-Added = {2007-02-20 19:13:35 -0500},
1536 Date-Modified = {2007-02-20 19:13:56 -0500},
1537 Doi = {10.1103/PhysRevLett.89.275502},
1538 Journal = {Phys. Rev. Lett.},
1539 Local-Url = {file://localhost/Users/charles/Documents/Papers/Nam/2002.pdf},
1540 Month = {Dec},
1541 Number = {27},
1542 Numpages = {4},
1543 Pages = {275502},
1544 Publisher = {American Physical Society},
1545 Title = {Formation of an Icosahedral Structure during the Freezing of Gold Nanoclusters: Surface-Induced Mechanism},
1546 Volume = {89},
1547 Year = {2002}}
1548
1549 @article{LarsonI._la970029p,
1550 Affiliation = {Advanced Mineral Products Special Research Centre, University of Melbourne, Parkville, Victoria 3052, Australia, and CSIRO Division of Chemicals and Polymers, Private Bag 10, Rosebank MDC, Clayton, Victoria 3169, Australia},
1551 Author = {Larson, I. and Chan, D.Y.C. and Drummond, C.J. and Grieser, F.},
1552 Date-Added = {2007-02-20 19:05:40 -0500},
1553 Date-Modified = {2007-02-20 19:05:47 -0500},
1554 Issn = {0743-7463},
1555 Journal = {Langmuir},
1556 Local-Url = {file://localhost/Users/charles/Documents/Papers/Larson/1997.pdf},
1557 Number = {9},
1558 Pages = {2429-2431},
1559 Title = {Use of Atomic Force Microscopy Force Measurements To Monitor Citrate Displacement by Amines on Gold in Aqueous Solution},
1560 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/la970029p},
1561 Volume = {13},
1562 Year = {1997}}
1563
1564 @article{PillaiZ.S._jp037018r,
1565 Affiliation = {Notre Dame Radiation Laboratory, Notre Dame, Indiana 46556-0579},
1566 Author = {Pillai, Z.S. and Kamat, P.V.},
1567 Date-Added = {2007-02-20 18:59:05 -0500},
1568 Date-Modified = {2007-02-20 18:59:19 -0500},
1569 Issn = {1520-6106},
1570 Journal = {Journal of Physical Chemistry B},
1571 Local-Url = {file://localhost/Users/charles/Documents/Papers/Pillai/2004.pdf},
1572 Number = {3},
1573 Pages = {945-951},
1574 Title = {What Factors Control the Size and Shape of Silver Nanoparticles in the Citrate Ion Reduction Method?},
1575 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/jp037018r},
1576 Volume = {108},
1577 Year = {2004}}
1578
1579 @article{HengleinA._la981278w,
1580 Affiliation = {Notre Dame Radiation Laboratory and Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556-0579},
1581 Author = {Henglein, A. and Meisel, D.},
1582 Date-Added = {2007-02-20 18:35:29 -0500},
1583 Date-Modified = {2007-02-20 18:35:49 -0500},
1584 Issn = {0743-7463},
1585 Journal = {Langmuir},
1586 Local-Url = {file://localhost/Users/charles/Documents/Papers/Henglein/1998.pdf},
1587 Number = {26},
1588 Pages = {7392-7396},
1589 Title = {Radiolytic Control of the Size of Colloidal Gold Nanoparticles},
1590 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/la981278w},
1591 Volume = {14},
1592 Year = {1998}}
1593
1594 @article{PhysRevE.56.4135,
1595 Author = {Bertolini, Davide and Tani, Alessandro},
1596 Date-Added = {2007-02-16 15:30:56 -0500},
1597 Date-Modified = {2007-02-16 15:31:04 -0500},
1598 Doi = {10.1103/PhysRevE.56.4135},
1599 Journal = {Phys. Rev. E},
1600 Local-Url = {file://localhost/Users/charles/Documents/Papers/Bertolini/1997.pdf},
1601 Month = {Oct},
1602 Number = {4},
1603 Numpages = {16},
1604 Pages = {4135--4151},
1605 Publisher = {American Physical Society},
1606 Title = {Thermal conductivity of water: Molecular dynamics and generalized hydrodynamics results},
1607 Volume = {56},
1608 Year = {1997}}
1609
1610 @article{Tokumasu:2004lr,
1611 Abstract = {The thermal conductivity of diatomic liquids was analyzed using a nonequilibrium molecular dynamics (NEMD) method. Five liquids, namely, O2, CO, CS2, Cl2 and Br2, were assumed. The two-center Lennard-Jones (2CLJ) model was used to express the intermolecular potential acting on liquid molecules. First, the equation of state of each liquid was obtained using MD simulation, and the critical temperature, density and pressure of each liquid were determined. Heat conduction of each liquid at various liquid states {$[$}metastable ({$[$}rho{$]$}=1.9{$[$}rho{$]$}cr), saturated ({$[$}rho{$]$}=2.1{$[$}rho{$]$}cr), and stable ({$[$}rho{$]$}=2.3{$[$}rho{$]$}cr){$]$} at T=0.7Tcr was simulated and the thermal conductivity was estimated. These values were compared with experimental results and it was confirmed that the simulated results were consistent with the experimental data within 10{\%}. Obtained thermal conductivities at saturated state were reduced by the critical temperature, density and mass of molecules and these values were compared with each other. It was found that the reduced thermal conductivity increased with the increase in the molecular elongation. Detailed analysis of the molecular contribution to the thermal conductivity revealed that the contribution of the heat flux caused by energy transport and by translational energy transfer to the thermal conductivity is independent of the molecular elongation while the contribution of the heat flux caused by rotational energy transfer to the thermal conductivity increases with the increase in the molecular elongation. Moreover, by comparing the reduced thermal conductivity at various states, it was found that the increase of thermal conductivity with the increase in the density, or pressure, was caused by the increase of the contribution of energy transfer due to molecular interaction.},
1612 Author = {Tokumasu, Takashi and Kamijo, Kenjiro},
1613 Date-Added = {2007-02-16 15:23:00 -0500},
1614 Date-Modified = {2007-02-16 15:24:21 -0500},
1615 Journal = {Superlattices and Microstructures},
1616 Keywords = {Thermal conductivity; Nonequilibrium molecular dynamics; Diatomic liquid; Molecular elongation; Critical point},
1617 Local-Url = {file://localhost/Users/charles/Documents/Papers/Tokumasu/2004.pdf},
1618 Number = {3-6},
1619 Pages = {217--225},
1620 Title = {Molecular dynamics study for the thermal conductivity of diatomic liquid; Eurotherm 75 'Microscale Heat Transfer 2'},
1621 Ty = {JOUR},
1622 Url = {http://www.sciencedirect.com/science/article/B6WXB-4CDJD1N-4/2/069b3dce0464dd2de1e61d14079e19d4},
1623 Volume = {35},
1624 Year = {2004}}
1625
1626 @article{VardemanC.F._jp051575r,
1627 Affiliation = {Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556},
1628 Author = {Vardeman, C.F. and Conforti, P.F. and Sprague, M.M. and Gezelter, J.D.},
1629 Date-Added = {2007-02-14 17:29:20 -0500},
1630 Date-Modified = {2007-02-16 15:23:00 -0500},
1631 Issn = {1520-6106},
1632 Journal = {Journal of Physical Chemistry B},
1633 Local-Url = {file://localhost/Users/charles/Documents/Papers/Vardeman/2005.pdf},
1634 Number = {35},
1635 Pages = {16695-16699},
1636 Title = {Breathing Mode Dynamics and Elastic Properties of Gold Nanoparticles},
1637 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/jp051575r},
1638 Volume = {109},
1639 Year = {2005}}
1640
1641 @article{PhysRevB.66.224301,
1642 Author = {Wilson, Orla M. and Hu, Xiaoyuan and Cahill, David G. and Braun, Paul V.},
1643 Date-Added = {2007-02-09 18:52:24 -0500},
1644 Date-Modified = {2007-02-16 15:23:00 -0500},
1645 Doi = {10.1103/PhysRevB.66.224301},
1646 Journal = {Phys. Rev. B},
1647 Local-Url = {file://localhost/Users/charles/Documents/Papers/Wilson/2002.pdf},
1648 Month = {Dec},
1649 Number = {22},
1650 Numpages = {6},
1651 Pages = {224301},
1652 Publisher = {American Physical Society},
1653 Title = {Colloidal metal particles as probes of nanoscale thermal transport in fluids},
1654 Volume = {66},
1655 Year = {2002}}
1656
1657 @article{PhysRevB.59.3527,
1658 Author = {Qi, Yue and \c{C}a\v{g}in, Tahir and Kimura, Yoshitaka and {Goddard III}, William A.},
1659 Date-Added = {2007-02-09 18:34:34 -0500},
1660 Date-Modified = {2007-05-16 15:04:34 -0400},
1661 Doi = {10.1103/PhysRevB.59.3527},
1662 Journal = {Phys. Rev. B},
1663 Local-Url = {file://localhost/Users/charles/Documents/Papers/Qi/1999.pdf},
1664 Month = {Feb},
1665 Number = {5},
1666 Numpages = {6},
1667 Pages = {3527--3533},
1668 Publisher = {American Physical Society},
1669 Title = {Molecular-dynamics simulations of glass formation and crystallization in binary liquid metals:\quad{}{C}u-{A}g and {C}u-{N}i},
1670 Volume = {59},
1671 Year = {1999}}
1672
1673 @article{bhowmick:164513,
1674 Author = {Somnath Bhowmick and Vijay B. Shenoy},
1675 Date-Added = {2007-02-09 18:16:54 -0500},
1676 Date-Modified = {2007-02-16 15:23:00 -0500},
1677 Eid = {164513},
1678 Journal = {The Journal of Chemical Physics},
1679 Keywords = {stress effects; thermal conductivity; molecular dynamics method},
1680 Local-Url = {file://localhost/Users/charles/Documents/Papers/Bhowmick/2006.pdf},
1681 Number = {16},
1682 Numpages = {6},
1683 Pages = {164513},
1684 Publisher = {AIP},
1685 Title = {Effect of strain on the thermal conductivity of solids},
1686 Url = {http://link.aip.org/link/?JCP/125/164513/1},
1687 Volume = {125},
1688 Year = {2006}}
1689
1690 @article{che:6888,
1691 Author = {Jianwei Che and Tahir Cagin and Weiqiao Deng and William A. Goddard III},
1692 Date-Added = {2007-02-09 18:02:08 -0500},
1693 Date-Modified = {2007-02-16 15:23:00 -0500},
1694 Journal = {The Journal of Chemical Physics},
1695 Keywords = {diamond; thermal conductivity; digital simulation; vacancies (crystal); Green's function methods; isotope effects},
1696 Local-Url = {file://localhost/Users/charles/Documents/Papers/Che/2000.pdf},
1697 Number = {16},
1698 Pages = {6888-6900},
1699 Publisher = {AIP},
1700 Title = {Thermal conductivity of diamond and related materials from molecular dynamics simulations},
1701 Url = {http://link.aip.org/link/?JCP/113/6888/1},
1702 Volume = {113},
1703 Year = {2000}}
1704
1705 @article{Kob:1999fk,
1706 Abstract = {After a brief introduction to the dynamics of supercooled liquids, we discuss some of the advantages and drawbacks of computer simulations of such systems. Subsequently we present the results of computer simulations in which the dynamics of a fragile glass former, a binary Lennard-Jones system, is compared to that of a strong glass former, SiO$_{2}$. This comparison gives evidence that the reason for the different temperature dependences of these two types of glass former lies in the transport mechanism for the particles in the vicinity of T$_{c}$, the critical temperature of mode-coupling theory. Whereas that for the fragile glass former is described very well by the ideal version of mode-coupling theory, that for the strong glass former is dominated by activated processes. In the last part of the article we review some simulations of glass formers in which the dynamics below the glass transition temperature was investigated. We show that such simulations might help to establish a connection between systems with self-generated disorder (e.g. structural glasses) and quenched disorder (e.g. spin glasses). },
1707 Author = {Walter Kob},
1708 Date-Added = {2007-02-07 14:13:30 -0500},
1709 Date-Modified = {2007-02-16 15:23:00 -0500},
1710 Journal = {Journal of Physics: Condensed Matter},
1711 Local-Url = {file://localhost/Users/charles/Documents/Papers/Kob/1999.pdf},
1712 Number = {10},
1713 Pages = {R85-R115},
1714 Title = {Computer simulations of supercooled liquids and glasses},
1715 Url = {http://stacks.iop.org/0953-8984/11/R85},
1716 Volume = {11},
1717 Year = {1999}}
1718
1719 @article{PhysRevB.61.5771,
1720 Author = {Soler, Jos\'e M. and Beltr\'an, Marcela R. and Michaelian, Karo and Garz\'on, Ignacio L. and Ordej\'on, Pablo and S\'anchez-Portal, Daniel and Artacho, Emilio},
1721 Date-Added = {2007-02-05 16:34:03 -0500},
1722 Date-Modified = {2007-02-16 15:23:00 -0500},
1723 Doi = {10.1103/PhysRevB.61.5771},
1724 Journal = {Phys. Rev. B},
1725 Local-Url = {file://localhost/Users/charles/Documents/Papers/Soler/2000.pdf},
1726 Month = {Feb},
1727 Number = {8},
1728 Numpages = {9},
1729 Pages = {5771--5780},
1730 Publisher = {American Physical Society},
1731 Title = {Metallic bonding and cluster structure},
1732 Volume = {61},
1733 Year = {2000}}
1734
1735 @article{0953-8984-14-26-101,
1736 Abstract = {We present a new method for constant-pressure molecular dynamics simulation which is parameter free. This method is especially appropriate for finite systems in which a periodic boundary condition does not apply. Simulations on carbon nanotubes and Ni nanoparticles clearly demonstrate the validity of the method, from which we can also easily obtain the equations of states for a finite system under external pressure. },
1737 Author = {D Y Sun and X G Gong},
1738 Date-Added = {2007-02-05 16:29:44 -0500},
1739 Date-Modified = {2007-02-16 15:23:00 -0500},
1740 Journal = {Journal of Physics: Condensed Matter},
1741 Local-Url = {file://localhost/Users/charles/Documents/Papers/Sun/2002.pdf},
1742 Number = {26},
1743 Pages = {L487-L493},
1744 Title = {A new constant-pressure molecular dynamics method for finite systems},
1745 Url = {http://stacks.iop.org/0953-8984/14/L487},
1746 Volume = {14},
1747 Year = {2002}}
1748
1749 @article{luo:145502,
1750 Author = {W. K. Luo and H. W. Sheng and F. M. Alamgir and J. M. Bai and J. H. He and E. Ma},
1751 Date-Added = {2007-01-08 14:00:22 -0500},
1752 Date-Modified = {2007-02-16 15:23:00 -0500},
1753 Eid = {145502},
1754 Journal = {Physical Review Letters},
1755 Keywords = {silver alloys; nickel alloys; noncrystalline structure; quasicrystals; EXAFS; XANES; Monte Carlo methods},
1756 Local-Url = {file://localhost/Users/charles/Documents/Papers/Luo/2004.pdf},
1757 Number = {14},
1758 Numpages = {4},
1759 Pages = {145502},
1760 Publisher = {APS},
1761 Title = {Icosahedral Short-Range Order in Amorphous Alloys},
1762 Url = {http://link.aps.org/abstract/PRL/v92/e145502},
1763 Volume = {92},
1764 Year = {2004}}
1765
1766 @article{HuangS.-P._jp0204206,
1767 Affiliation = {Department of Chemical Engineering, University of South Carolina, Columbia, South Carolina 29208},
1768 Author = {Huang, S.-P. and Balbuena, P.B.},
1769 Date-Added = {2007-01-08 12:42:05 -0500},
1770 Date-Modified = {2007-05-07 17:19:56 -0400},
1771 Issn = {1520-6106},
1772 Journal = {Journal of Physical Chemistry B},
1773 Local-Url = {file://localhost/Users/charles/Documents/Papers/Huang/2002.pdf},
1774 Number = {29},
1775 Pages = {7225-7236},
1776 Title = {Melting of Bimetallic {C}u-{N}i Nanoclusters},
1777 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/jp0204206},
1778 Volume = {106},
1779 Year = {2002}}
1780
1781 @article{Ju:2005qy,
1782 Address = {National Center for High-Performance Computing, No. 21, Nan-Ke 3rd Road, Hsin-Shi, Tainan, Taiwan, Republic of China},
1783 Author = {Ju, S. -P. and Lo, Y. -C. and Sun, S. -J. and Chang, J. -G.},
1784 Date-Added = {2007-01-03 18:29:53 -0500},
1785 Date-Modified = {2007-02-16 15:23:00 -0500},
1786 Isbn = {1520-6106},
1787 Ja = {J. Phys. Chem. B},
1788 Jo = {Journal of Physical Chemistry B},
1789 Journal = {Journal of Physical Chemistry B},
1790 Local-Url = {file://localhost/Users/charles/Documents/Papers/Ju/2005.pdf},
1791 Number = {44},
1792 Pages = {20805--20809},
1793 Title = {Investigation on the Structural Variation of Co-Cu Nanoparticles during the Annealing Process},
1794 Ty = {JOUR},
1795 Url = {http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/jp052803k},
1796 Volume = {109},
1797 Year = {2005}}
1798
1799 @article{luo:131927,
1800 Author = {W. K. Luo and H. W. Sheng and E. Ma},
1801 Date-Added = {2007-01-03 18:15:55 -0500},
1802 Date-Modified = {2007-02-16 15:23:00 -0500},
1803 Eid = {131927},
1804 Journal = {Applied Physics Letters},
1805 Keywords = {molecular dynamics method; amorphous state; alloys},
1806 Local-Url = {file://localhost/Users/charles/Documents/Papers/Luo/2006.pdf},
1807 Number = {13},
1808 Numpages = {3},
1809 Pages = {131927},
1810 Publisher = {AIP},
1811 Title = {Pair correlation functions and structural building schemes in amorphous alloys},
1812 Url = {http://link.aip.org/link/?APL/89/131927/1},
1813 Volume = {89},
1814 Year = {2006}}
1815
1816 @article{PhysRevLett.89.075507,
1817 Author = {Schenk, T. and Holland-Moritz, D. and Simonet, V. and Bellissent, R. and Herlach, D. M.},
1818 Date-Added = {2007-01-03 18:07:34 -0500},
1819 Date-Modified = {2007-02-16 15:23:00 -0500},
1820 Doi = {10.1103/PhysRevLett.89.075507},
1821 Journal = {Phys. Rev. Lett.},
1822 Local-Url = {file://localhost/Users/charles/Documents/Papers/Schenk/2002.pdf},
1823 Month = {Jul},
1824 Number = {7},
1825 Numpages = {4},
1826 Pages = {075507},
1827 Publisher = {American Physical Society},
1828 Title = {Icosahedral Short-Range Order in Deeply Undercooled Metallic Melts},
1829 Volume = {89},
1830 Year = {2002}}
1831
1832 @article{Ma:2005fk,
1833 Abstract = {The development and understanding of alloys is one of the most important themes of physical metallurgy. Over the past four decades, the progress in modern processing techniques has enabled researchers to artificially create an increasing number of new alloys in systems that are immiscible in thermodynamic equilibrium. This possibility of alloying elements between which no alloys exist in nature offers exciting opportunities for many physics, chemistry, and materials science endeavors. One of the obvious questions that needs to be answered is exactly what kind of alloys have been, and can be, obtained in these systems with positive heat of mixing, in terms of the uniformity, the presence of short-to-medium range chemical and topological order/clustering, and the energy state of the new alloy phases. This issue was not adequately addressed before because, until recent years, simple diffraction measurements constituted the main method for the characterization of the alloys produced. In this article, we survey the alloys created in binary systems with positive heat of mixing. Our emphasis is on a systematic examination of the atomic-level structure, and calorimetric determination of the positive enthalpy of mixing, of several model binary alloys created between immiscible elements, covering both amorphous and crystalline solid solutions. Vapor-deposited alloys will be our primary focus, but alloys prepared via other processing routes or modeled in computer simulations will also be discussed. The experimental characterization results recently obtained using local environment probes will be reviewed, together with the insight gained through computer atomistic simulations. The local structures uncovered will be correlated directly with the thermodynamic properties. A full account of the thermodynamic and kinetic aspects of the phase selection and the details of the transformation mechanisms involved, on the other hand, is a much broader subject to be dealt with in a separate review.},
1834 Author = {Ma, E.},
1835 Date-Added = {2007-01-03 18:04:41 -0500},
1836 Date-Modified = {2007-02-16 15:23:00 -0500},
1837 Journal = {Progress in Materials Science},
1838 Local-Url = {file://localhost/Users/charles/Documents/Papers/Ma/2005a.pdf},
1839 Number = {4},
1840 Pages = {413--509},
1841 Title = {Alloys created between immiscible elements},
1842 Ty = {JOUR},
1843 Url = {http://www.sciencedirect.com/science/article/B6TX1-4DDXN29-1/2/c79892bfea1714067d887cb627ada223},
1844 Volume = {50},
1845 Year = {2005}}
1846
1847 @article{2003RvMP...75..237F,
1848 Adsnote = {Provided by the Smithsonian/NASA Astrophysics Data System},
1849 Adsurl = {http://adsabs.harvard.edu/cgi-bin/nph-bib_query?bibcode=2003RvMP...75..237F&db_key=PHY},
1850 Author = {{Faupel}, F. and {Frank}, W. and {Macht}, M.-P. and {Mehrer}, H. and {Naundorf}, V. and {R{\"a}tzke}, K. and {Schober}, H.~R. and {Sharma}, S.~K. and {Teichler}, H.},
1851 Date-Added = {2007-01-03 17:57:24 -0500},
1852 Date-Modified = {2007-02-16 15:23:00 -0500},
1853 Doi = {10.1103/RevModPhys.75.237},
1854 Journal = {Reviews of Modern Physics},
1855 Month = feb,
1856 Pages = {237-280},
1857 Title = {{Diffusion in metallic glasses and supercooled melts}},
1858 Volume = 75,
1859 Year = 2003}
1860
1861 @article{KLEMENT:1960lr,
1862 Annote = {10.1038/187869b0},
1863 Author = {KLEMENT, W. , and WILLENS, R. H. and DUWEZ, POL},
1864 Date-Added = {2007-01-03 17:55:00 -0500},
1865 Date-Modified = {2007-02-16 15:23:00 -0500},
1866 Journal = {Nature},
1867 M3 = {10.1038/187869b0},
1868 Number = {4740},
1869 Pages = {869--870},
1870 Title = {Non-crystalline Structure in Solidified Gold-Silicon Alloys},
1871 Ty = {JOUR},
1872 Url = {http://dx.doi.org/10.1038/187869b0},
1873 Volume = {187},
1874 Year = {1960}}
1875
1876 @article{Buffat:1976yq,
1877 Author = {Ph. Buffat and J-P. Borel},
1878 Date-Added = {2007-01-03 17:50:30 -0500},
1879 Date-Modified = {2007-02-16 15:23:00 -0500},
1880 Journal = {Phys. Rev. A},
1881 Local-Url = {file://localhost/Users/charles/Documents/Papers/Buffat/1976.pdf},
1882 Pages = {2287--2298},
1883 Title = {Size effect on the melting temperature of gold particles},
1884 Volume = {13},
1885 Year = {1976}}
1886
1887 @article{De:1996ta,
1888 Author = {G. De and M. Gusso and L. Tapfer and M. Catalano and F. Gonella and G. Mattei and P. Mazzoldi and G. Battaglin},
1889 Date-Added = {2007-01-03 17:50:04 -0500},
1890 Date-Modified = {2007-02-16 15:23:00 -0500},
1891 Journal = {Journal of Applied Physics},
1892 Keywords = {COMPOSITE MATERIALS; SILVER; COPPER; SOLID CLUSTERS; SOL–GEL PROCESS; THIN FILMS; SILICA; ABSORPTION SPECTRA; RBS; XRD; TEM},
1893 Local-Url = {file://localhost/Users/charles/Documents/Papers/De/1996a.pdf},
1894 Number = {12},
1895 Pages = {6734-6739},
1896 Publisher = {AIP},
1897 Title = {Annealing behavior of silver, copper, and silver--copper nanoclusters in a silica matrix synthesized by the sol-gel technique},
1898 Url = {http://link.aip.org/link/?JAP/80/6734/1},
1899 Volume = {80},
1900 Year = {1996}}
1901
1902 @article{Mazzone:1997pe,
1903 Author = {G Mazzone and V Rosato},
1904 Date-Added = {2007-01-03 17:49:53 -0500},
1905 Date-Modified = {2007-02-16 15:23:00 -0500},
1906 Journal = {Phys. Rev. B},
1907 Local-Url = {file://localhost/Users/charles/Documents/Papers/Mazzone/1997.pdf},
1908 Number = {2},
1909 Pages = {837-842},
1910 Title = {Molecular-dynamics calculations of thermodynamics properties of metastable alloys},
1911 Volume = {55},
1912 Year = {1997}}
1913
1914 @article{Sheng:2002jo,
1915 Author = {Sheng, H. W. and Wilde, G. and Ma, E.},
1916 Date-Added = {2007-01-03 17:48:54 -0500},
1917 Date-Modified = {2007-02-16 15:23:00 -0500},
1918 Journal = {Acta Materialia},
1919 Local-Url = {file://localhost/Users/charles/Documents/Papers/Sheng/2002a.pdf},
1920 Number = {3},
1921 Pages = {475-488},
1922 Title = {The competing crystalline and amorphous solid solutions in the Ag-Cu system},
1923 Ty = {JOUR},
1924 Url = {http://www.sciencedirect.com/science/article/B6TW8-44W338F-3/2/3749f32cf6b1a4f8ebea936d508c9f87},
1925 Volume = {50},
1926 Year = {2002}}
1927
1928 @article{najafabadi:3144,
1929 Author = {R. Najafabadi and D. J. Srolovitz and E. Ma and M. Atzmon},
1930 Date-Added = {2007-01-03 17:48:54 -0500},
1931 Date-Modified = {2007-02-16 15:23:00 -0500},
1932 Journal = {Journal of Applied Physics},
1933 Keywords = {SILVER ALLOYS; COPPER ALLOYS; THERMODYNAMIC PROPERTIES; PHASE DIAGRAMS; COMPUTERIZED SIMULATION; CALORIMETRY; BINARY ALLOY SYSTEMS; FORMATION FREE ENTHALPY; LATTICE PARAMETERS; METASTABLE PHASES},
1934 Local-Url = {file://localhost/Users/charles/Documents/Papers/Najafabadi/1993.pdf},
1935 Number = {5},
1936 Pages = {3144-3149},
1937 Publisher = {AIP},
1938 Title = {Thermodynamic properties of metastable Ag-Cu alloys},
1939 Url = {http://link.aip.org/link/?JAP/74/3144/1},
1940 Volume = {74},
1941 Year = {1993}}
1942
1943 @article{duwez:1136,
1944 Author = {Pol Duwez and R. H. Willens and W. Klement and Jr},
1945 Date-Added = {2007-01-03 17:48:02 -0500},
1946 Date-Modified = {2007-02-16 15:23:00 -0500},
1947 Journal = {Journal of Applied Physics},
1948 Local-Url = {file://localhost/Users/charles/Documents/Papers/Duwez/1960.pdf},
1949 Number = {6},
1950 Pages = {1136-1137},
1951 Publisher = {AIP},
1952 Title = {Continuous Series of Metastable Solid Solutions in Silver-Copper Alloys},
1953 Url = {http://link.aip.org/link/?JAP/31/1136/2},
1954 Volume = {31},
1955 Year = {1960}}
1956
1957 @article{Banhart:1992sv,
1958 Author = {J Banhart and H Ebert and R Kuentzler and J Voitl\"{a}nder},
1959 Date-Added = {2007-01-03 17:48:02 -0500},
1960 Date-Modified = {2007-02-16 15:23:00 -0500},
1961 Local-Url = {file://localhost/Users/charles/Documents/Papers/Banhart/1992.pdf},
1962 Number = {16},
1963 Pages = {9968-9975},
1964 Title = {Electronic properties of single-phased metastable Ag-Cu alloys},
1965 Volume = {46},
1966 Year = {1992}}
1967
1968 @article{PhysRevB.67.155409,
1969 Author = {Gaudry, M. and Cottancin, E. and Pellarin, M. and Lerm\'e, J. and Arnaud, L. and Huntzinger, J. R. and Vialle, J. L. and Broyer, M. and Rousset, J. L. and Treilleux, M. and M\'elinon, P.},
1970 Date-Added = {2007-01-03 12:01:53 -0500},
1971 Date-Modified = {2007-02-16 15:23:00 -0500},
1972 Doi = {10.1103/PhysRevB.67.155409},
1973 Journal = {Phys. Rev. B},
1974 Local-Url = {file://localhost/Users/charles/Documents/Papers/Gaudry/2003.pdf},
1975 Month = {Apr},
1976 Number = {15},
1977 Numpages = {10},
1978 Pages = {155409},
1979 Publisher = {American Physical Society},
1980 Title = {Size and composition dependence in the optical properties of mixed (transition metal/noble metal) embedded clusters},
1981 Volume = {67},
1982 Year = {2003}}
1983
1984 @article{rapallo:194308,
1985 Author = {Arnaldo Rapallo and Giulia Rossi and Riccardo Ferrando and Alessandro Fortunelli and Benjamin C. Curley and Lesley D. Lloyd and Gary M. Tarbuck and Roy L. Johnston},
1986 Date-Added = {2006-12-30 15:20:37 -0500},
1987 Date-Modified = {2007-02-16 15:23:00 -0500},
1988 Eid = {194308},
1989 Journal = {The Journal of Chemical Physics},
1990 Keywords = {genetic algorithms; metal clusters; nanostructured materials; surface segregation; surface composition; optimisation; silver alloys; copper alloys; gold alloys; nickel alloys; chemical analysis},
1991 Local-Url = {file://localhost/Users/charles/Documents/Papers/Rapallo/2005.pdf},
1992 Number = {19},
1993 Numpages = {13},
1994 Pages = {194308},
1995 Publisher = {AIP},
1996 Title = {Global optimization of bimetallic cluster structures. I. Size-mismatched Ag--Cu, Ag--Ni, and Au--Cu systems},
1997 Url = {http://link.aip.org/link/?JCP/122/194308/1},
1998 Volume = {122},
1999 Year = {2005}}
2000
2001 @article{cheng:064117,
2002 Author = {Daojian Cheng and Shiping Huang and Wenchuan Wang},
2003 Date-Added = {2006-12-30 15:19:11 -0500},
2004 Date-Modified = {2007-02-16 15:23:00 -0500},
2005 Eid = {064117},
2006 Journal = {Physical Review B (Condensed Matter and Materials Physics)},
2007 Keywords = {copper alloys; gold alloys; metal clusters; melting; melting point; Monte Carlo methods; tight-binding calculations; specific heat; bond lengths; fluctuations; deformation; doping; surface segregation},
2008 Local-Url = {file://localhost/Users/charles/Documents/Papers/Cheng/2006.pdf},
2009 Number = {6},
2010 Numpages = {11},
2011 Pages = {064117},
2012 Publisher = {APS},
2013 Title = {Thermal behavior of core-shell and three-shell layered clusters: Melting of Cu[sub 1]Au[sub 54] and Cu[sub 12]Au[sub 43]},
2014 Url = {http://link.aps.org/abstract/PRB/v74/e064117},
2015 Volume = {74},
2016 Year = {2006}}
2017
2018 @article{rossi:105503,
2019 Author = {G. Rossi and A. Rapallo and C. Mottet and A. Fortunelli and F. Baletto and R. Ferrando},
2020 Date-Added = {2006-12-30 15:12:42 -0500},
2021 Date-Modified = {2007-02-16 15:23:00 -0500},
2022 Eid = {105503},
2023 Journal = {Physical Review Letters},
2024 Keywords = {metal clusters; nanoparticles; genetic algorithms; density functional theory; molecular dynamics method; potential energy functions; thermal stability; silver; nickel; copper; melting point; energy gap},
2025 Local-Url = {file://localhost/Users/charles/Documents/Papers/Rossi/2004.pdf},
2026 Number = {10},
2027 Numpages = {4},
2028 Pages = {105503},
2029 Publisher = {APS},
2030 Title = {Magic Polyicosahedral Core-Shell Clusters},
2031 Url = {http://link.aps.org/abstract/PRL/v93/e105503},
2032 Volume = {93},
2033 Year = {2004}}
2034
2035 @article{Hu:2005lr,
2036 Author = {Wangyu Hu and Shifang Xiao and Jianyu Yang and Zhi Zhang},
2037 Date-Added = {2006-12-30 15:06:16 -0500},
2038 Date-Modified = {2007-02-16 15:23:00 -0500},
2039 Journal = {The European Physical Journal B - Condensed Matter and Complex Systems},
2040 Local-Url = {file://localhost/Users/charles/Documents/Papers/Hu/2005.pdf},
2041 M3 = {10.1140/epjb/e2005-00210-8},
2042 Number = {4},
2043 Pages = {547--554},
2044 Title = {Melting evolution and diffusion behavior of vanadium nanoparticles},
2045 Ty = {JOUR},
2046 Url = {http://dx.doi.org/10.1140/epjb/e2005-00210-8},
2047 Volume = {V45},
2048 Year = {2005}}
2049
2050 @article{calvo:125414,
2051 Author = {F. Calvo and J. P. K. Doye},
2052 Date-Added = {2006-12-27 11:36:45 -0500},
2053 Date-Modified = {2007-02-16 15:23:00 -0500},
2054 Eid = {125414},
2055 Journal = {Physical Review B (Condensed Matter and Materials Physics)},
2056 Keywords = {metal clusters; nanostructured materials; phase diagrams; free energy; high-pressure effects},
2057 Local-Url = {file://localhost/Users/charles/Documents/Papers/Calvo/2004.pdf},
2058 Number = {12},
2059 Numpages = {6},
2060 Pages = {125414},
2061 Publisher = {APS},
2062 Title = {Pressure effects on the structure of nanoclusters},
2063 Url = {http://link.aps.org/abstract/PRB/v69/e125414},
2064 Volume = {69},
2065 Year = {2004}}
2066
2067 @article{Baltazar:2006lr,
2068 Abstract = {A compilation and an implementation of different methodologies to simulate NPT ensembles on finite systems is presented. In general, the methods discussed can be classified in two different groups depending on how the external pressure is applied to the system. The first approach is based on including the pressure with its conjugate thermodynamical variable, the volume, in the Lagrangian of the system. For this group four different volume definitions were considered and we assess their validity by studying the structural properties of small systems as function of pressure. In particular, we focus on the stability of the C60 molecule as well as the amorphization process of a diamond-like cluster under pressure. In the second group, the finite system (C60) is embedded in a classical fluid which serves as a pressure reservoir. We take the latter method as reference because it is closest to the experimental situation. The difficulties and the regimes where these methods can be used are also discussed.},
2069 Author = {Baltazar, S. E. and Romero, A. H. and Rodriguez-Lopez, J. L. and Terrones, H. and Martonak, R.},
2070 Date-Added = {2006-12-14 16:25:59 -0500},
2071 Date-Modified = {2007-02-16 15:23:00 -0500},
2072 Journal = {Computational Materials Science},
2073 Keywords = {High pressures, Finite systems, Volume, Molecular dynamics},
2074 Local-Url = {file://localhost/Users/charles/Documents/Papers/Baltazar/2006a.pdf},
2075 Number = {4},
2076 Pages = {526--536},
2077 Title = {Assessment of isobaric-isothermal (NPT) simulations for finite systems},
2078 Ty = {JOUR},
2079 Url = {http://www.sciencedirect.com/science/article/B6TWM-4J72YTH-1/2/47e99bb33e4cf899d96bcf83966fc4be},
2080 Volume = {37},
2081 Year = {2006}}
2082
2083 @article{Kohanoff:2005,
2084 Author = {Kohanoff, J and Caro, A and Finnis, MW},
2085 Date = {SEP 5},
2086 Date-Added = {2006-12-14 16:21:21 -0500},
2087 Date-Modified = {2007-04-23 13:17:24 -0400},
2088 Journal = CHEMPHYSCHEM,
2089 Local-Url = {file://localhost/Users/charles/Documents/Papers/Kohanoff/2005.pdf},
2090 Number = 9,
2091 Pages = {1848 - 1852},
2092 Title = {An isothermal-isobaric Langevin thermostat for simulating nanoparticles under pressure: Application to {A}u clusters},
2093 Volume = 6,
2094 Year = 2005}
2095
2096 @article{0953-8984-18-39-037,
2097 Abstract = {We report a classical molecular dynamics isothermal\–isobaric ensemble ( NPT ) implementation for the simulation of pressure effects on finite systems. The method is based on calculating the enclosed surface area by means of the Delauney triangulation method, which results in a fairly accurate description of the surface and the system volume. The external pressure is applied to the system by external forces acting on the triangulated surface covering the nanostructure. Pressure is exerted perpendicularly to every one of the Delauney triangles, by equally distributing the force to every corner of a triangle. We applied the method to finite single wall capped carbon nanotubes (SWCNTs) with different chiralities and different tube lengths ranging from 4~nm up to 30~nm. Pressure effects are studied as a function of the radii and the nanotube length, as well as as a function of temperature. Our results are in very good agreement when compared with both experimental and other theoretical results. },
2098 Author = {S E Baltazar and A H Romero and J L Rodr\'{i}guez-L\'{o}pez and R Marto\ň\'{a}k},
2099 Date-Added = {2006-12-14 15:23:48 -0500},
2100 Date-Modified = {2007-02-16 15:23:00 -0500},
2101 Journal = {Journal of Physics: Condensed Matter},
2102 Local-Url = {file://localhost/Users/charles/Documents/Papers/Baltazar/2006.pdf},
2103 Number = {39},
2104 Pages = {9119-9128},
2105 Title = {Finite single wall capped carbon nanotubes under hydrostatic pressure},
2106 Url = {http://stacks.iop.org/0953-8984/18/9119},
2107 Volume = {18},
2108 Year = {2006}}
2109
2110 @article{PhysRevB.63.193412,
2111 Author = {Sun, D. Y. and Gong, X. G. and Wang, Xiao-Qian},
2112 Date-Added = {2006-12-14 15:08:18 -0500},
2113 Date-Modified = {2007-02-16 15:23:00 -0500},
2114 Doi = {10.1103/PhysRevB.63.193412},
2115 Journal = {Phys. Rev. B},
2116 Local-Url = {file://localhost/Users/charles/Documents/Papers/Sun/2001.pdf},
2117 Month = {May},
2118 Number = {19},
2119 Numpages = {4},
2120 Pages = {193412},
2121 Publisher = {American Physical Society},
2122 Title = {Soft and hard shells in metallic nanocrystals},
2123 Volume = {63},
2124 Year = {2001}}
2125
2126 @book{Leach:1996kx,
2127 Author = {Andrew R. Leach},
2128 Date-Added = {2006-11-29 19:03:23 -0500},
2129 Date-Modified = {2007-02-16 15:23:00 -0500},
2130 Publisher = {Addison-Wesley Pub. Co.},
2131 Title = {Molecular Modelling: Principles and Applications},
2132 Year = {1996}}
2133
2134 @article{Chen90,
2135 Author = {A.~P. Sutton and J. Chen},
2136 Date-Modified = {2007-02-16 15:23:00 -0500},
2137 Journal = {Phil. Mag. Lett.},
2138 Pages = {139-146},
2139 Title = {Long-Range Finnis Sinclair Potentials},
2140 Volume = 61,
2141 Year = {1990}}
2142
2143 @article{Meineke:2004uq,
2144 Author = {Meineke, Matthew A. and Vardeman II, Charles F. and Teng Lin and Christopher J. Fennell and J. Daniel Gezelter},
2145 Date-Added = {2006-11-27 18:09:52 -0500},
2146 Date-Modified = {2007-02-16 15:23:00 -0500},
2147 Journal = {J. Comp Chem},
2148 Number = {3},
2149 Pages = {252-271},
2150 Title = {{OOPSE:} An object-oriented parallel simulation engine for molecular dynamics},
2151 Volume = {26},
2152 Year = {2005}}
2153
2154 @book{asmvol3,
2155 Date-Added = {2006-11-27 14:49:12 -0500},
2156 Date-Modified = {2007-02-16 15:23:00 -0500},
2157 Publisher = {ASM},
2158 Title = {ASM Handbook Volume 03: Alloy Phase Diagrams},
2159 Year = {1992}}
2160
2161 @article{swygenhoven:1652,
2162 Author = {H. Van Swygenhoven and A. Caro},
2163 Date-Added = {2006-11-16 18:15:30 -0500},
2164 Date-Modified = {2007-02-16 15:23:00 -0500},
2165 Journal = {Applied Physics Letters},
2166 Keywords = {nickel; plastic deformation; grain size; slip; molecular dynamics method; nanostructured materials},
2167 Local-Url = {file://localhost/Users/charles/Documents/Papers/Swygenhoven/1997.pdf},
2168 Number = {12},
2169 Pages = {1652-1654},
2170 Publisher = {AIP},
2171 Title = {Plastic behavior of nanophase Ni: A molecular dynamics computer simulation},
2172 Url = {http://link.aip.org/link/?APL/71/1652/1},
2173 Volume = {71},
2174 Year = {1997}}
2175
2176 @article{xiao:184504,
2177 Author = {Shifang Xiao and Wangyu Hu and Jianyu Yang},
2178 Date-Added = {2006-11-16 18:06:31 -0500},
2179 Date-Modified = {2007-02-16 15:23:00 -0500},
2180 Eid = {184504},
2181 Journal = {The Journal of Chemical Physics},
2182 Keywords = {silver; melting point; grain size; nanostructured materials; amorphous state; grain boundaries; computational geometry; molecular dynamics method},
2183 Local-Url = {file://localhost/Users/charles/Documents/Papers/Xiao/2006.pdf},
2184 Number = {18},
2185 Numpages = {4},
2186 Pages = {184504},
2187 Publisher = {AIP},
2188 Title = {Melting temperature: From nanocrystalline to amorphous phase},
2189 Url = {http://link.aip.org/link/?JCP/125/184504/1},
2190 Volume = {125},
2191 Year = {2006}}
2192
2193 @article{Chen:2004ec,
2194 Abstract = {Thermodynamic and structural properties of supercooled nanoclusters are of considerable interest. A numerical study of a gold nanocluster with 2112 atoms based on molecular dynamics simulation demonstrates how the cooling conditions affect the microstructures of nanoclusters. Structural parameters like pair correlation function, pair analysis and bond orientation-order parameters are used to investigate the structure transition of an Au nanocluster. The result shows that an Au nanocluster will evolve into a different microstructure under different cooling processes. At a cooling rate of 1.5625 $\times$ 10$^{13}$\ K\ s$^{\−1}$, the nanocluster forms an amorphous type structure. At a lower cooling rate of 1.5625 $\times$ 10$^{12}$\ K\ s$^{\−1}$, the system transforms from a supercooled liquid into a crystal-like structure. By looking into the bonded pairs within the cluster, the rearrangement of the Au nanocluster should be responsible for the structural evolution. },
2195 Author = {Ying Chen and Xiufang Bian and Jingxiang Zhang and Yanning Zhang and Li Wang},
2196 Date-Added = {2006-09-25 12:21:05 -0400},
2197 Date-Modified = {2007-02-16 15:23:00 -0500},
2198 Journal = {Modelling and Simulation in Materials Science and Engineering},
2199 Local-Url = {file://localhost/Users/charles/Documents/Papers/Chen/2004.pdf},
2200 Number = {3},
2201 Pages = {373-379},
2202 Title = {Structure and dynamics of gold nanocluster under cooling conditions},
2203 Url = {http://stacks.iop.org/0965-0393/12/373},
2204 Volume = {12},
2205 Year = {2004}}
2206
2207 @article{HuM._jp020581+,
2208 Author = {Hu, M. and Hartland, G.V.},
2209 Date-Added = {2006-09-24 23:11:31 -0400},
2210 Date-Modified = {2007-02-16 15:23:00 -0500},
2211 Journal = {Journal of Physical Chemistry B},
2212 Local-Url = {file://localhost/Users/charles/Documents/Papers/jp020581+.pdf},
2213 Number = {28},
2214 Pages = {7029-7033},
2215 Title = {Heat Dissipation for {A}u Particles in Aqueous Solution: Relaxation Time versus Size},
2216 Url = {http://dx.doi.org/10.1021/jp020581+},
2217 Volume = {106},
2218 Year = {2002}}
2219
2220 @article{plech:195423,
2221 Author = {A. Plech and V. Kotaidis and S. Gresillon and C. Dahmen and G. von Plessen},
2222 Date-Added = {2006-09-24 23:08:07 -0400},
2223 Date-Modified = {2007-03-24 12:37:59 -0400},
2224 Eid = {195423},
2225 Journal = {Phys. Rev. B},
2226 Keywords = {gold; laser materials processing; melting; nanoparticles; time resolved spectra; X-ray scattering; lattice dynamics; high-speed optical techniques; cooling; thermal resistance; thermal conductivity; long-range order},
2227 Local-Url = {file://localhost/Users/charles/Documents/Papers/PhysRevB_70_195423.pdf},
2228 Number = {19},
2229 Numpages = {7},
2230 Pages = {195423},
2231 Publisher = {APS},
2232 Title = {Laser-induced heating and melting of gold nanoparticles studied by time-resolved x-ray scattering},
2233 Url = {http://link.aps.org/abstract/PRB/v70/e195423},
2234 Volume = {70},
2235 Year = {2004}}
2236
2237 @article{kotaidis:184702,
2238 Author = {V. Kotaidis and C. Dahmen and G. von Plessen and F. Springer and A. Plech},
2239 Date-Added = {2006-09-24 23:05:26 -0400},
2240 Date-Modified = {2007-02-16 15:23:00 -0500},
2241 Eid = {184702},
2242 Journal = {The Journal of Chemical Physics},
2243 Keywords = {gold; nanoparticles; water; laser beam effects; surface collisions; bubbles; evaporation; X-ray scattering},
2244 Local-Url = {file://localhost/Users/charles/Documents/Papers/JChemPhys_124_184702.pdf},
2245 Number = {18},
2246 Numpages = {7},
2247 Pages = {184702},
2248 Publisher = {AIP},
2249 Title = {Excitation of nanoscale vapor bubbles at the surface of gold nanoparticles in water},
2250 Url = {http://link.aip.org/link/?JCP/124/184702/1},
2251 Volume = {124},
2252 Year = {2006}}
2253
2254 @article{ShibataT._ja026764r,
2255 Author = {Shibata, T. and Bunker, B.A. and Zhang, Z. and Meisel, D. and Vardeman, C.F. and Gezelter, J.D.},
2256 Date-Added = {2006-09-24 22:35:30 -0400},
2257 Date-Modified = {2007-07-02 14:11:36 -0400},
2258 Journal = {JACS},
2259 Local-Url = {file://localhost/Users/charles/Documents/Papers/ja026764r.pdf},
2260 Number = {40},
2261 Pages = {11989-11996},
2262 Title = {Size-Dependent Spontaneous Alloying of {A}u-{A}g Nanoparticles},
2263 Url = {http://dx.doi.org/10.1021/ja026764r},
2264 Volume = {124},
2265 Year = {2002}}
2266
2267 @article{qian:4514,
2268 Author = {J. Qian and R. Hentschke and A. Heuer},
2269 Date-Added = {2006-09-24 22:06:58 -0400},
2270 Date-Modified = {2007-02-16 15:23:00 -0500},
2271 Journal = {The Journal of Chemical Physics},
2272 Keywords = {organic compounds; molecular dynamics method; molecular reorientation; glass},
2273 Local-Url = {file://localhost/Users/charles/Documents/Papers/JChemPhys_110_4514.pdf},
2274 Number = {9},
2275 Pages = {4514-4522},
2276 Publisher = {AIP},
2277 Title = {Dynamic heterogeneities of translational and rotational motion of a molecular glass former from computer simulations},
2278 Url = {http://link.aip.org/link/?JCP/110/4514/1},
2279 Volume = {110},
2280 Year = {1999}}
2281
2282 @article{garrison:041501,
2283 Author = {Barbara J. Garrison and Tatiana E. Itina and Leonid V. Zhigilei},
2284 Date-Added = {2006-09-23 18:10:42 -0400},
2285 Date-Modified = {2007-02-16 15:23:00 -0500},
2286 Eid = {041501},
2287 Journal = {Physical Review E (Statistical, Nonlinear, and Soft Matter Physics)},
2288 Keywords = {laser ablation; nucleation; molecular dynamics method; digital simulation; enthalpy},
2289 Local-Url = {file://localhost/Users/charles/Documents/Papers/PhysRevE_68_041501.pdf},
2290 Number = {4},
2291 Numpages = {4},
2292 Pages = {041501},
2293 Publisher = {APS},
2294 Title = {Limit of overheating and the threshold behavior in laser ablation},
2295 Url = {http://link.aps.org/abstract/PRE/v68/e041501},
2296 Volume = {68},
2297 Year = {2003}}
2298
2299 @article{DouY._jp003913o,
2300 Author = {Dou, Y. and Zhigilei, L.V. and Winograd, N. and Garrison, B.J.},
2301 Date-Added = {2006-09-23 18:02:53 -0400},
2302 Date-Modified = {2007-02-16 15:23:00 -0500},
2303 Journal = {Journal of Physical Chemistry A},
2304 Local-Url = {file://localhost/Users/charles/Documents/Papers/jp003913o.pdf},
2305 Number = {12},
2306 Pages = {2748-2755},
2307 Title = {Explosive Boiling of Water Films Adjacent to Heated Surfaces: A Microscopic Description},
2308 Url = {http://dx.doi.org/10.1021/jp003913o},
2309 Volume = {105},
2310 Year = {2001}}
2311
2312 @misc{ganesh-2006-,
2313 Author = {P. Ganesh and M. Widom},
2314 Date-Added = {2006-09-22 14:21:33 -0400},
2315 Date-Modified = {2007-02-16 15:23:00 -0500},
2316 Local-Url = {file://localhost/Users/charles/Documents/Papers/ico_cu.pdf},
2317 Title = {Signature of nearly icosahedral structures in liquid and supercooled liquid Copper},
2318 Url = {http://www.citebase.org/abstract?id=oai:arXiv.org:cond-mat/0602239},
2319 Year = {2006}}
2320
2321 @article{wolde:9932,
2322 Author = {Pieter Rein ten Wolde and Maria J. Ruiz-Montero and Daan Frenkel},
2323 Date-Added = {2006-09-22 14:12:18 -0400},
2324 Date-Modified = {2007-03-24 12:28:27 -0400},
2325 Journal = {J. Chem. Phys.},
2326 Keywords = {NUCLEATION; CRYSTALLIZATION; LENNARD–JONES POTENTIAL; COMPUTERIZED SIMULATION; FCC LATTICES; BCC LATTICES; CRITICAL SIZE; ORDER PARAMETERS; SOLID–FLUID INTERFACES; MOLECULAR DYNAMICS CALCULATIONS; REACTION RATES},
2327 Local-Url = {file://localhost/Users/charles/Documents/Papers/JChemPhys_104_9932.pdf},
2328 Number = {24},
2329 Pages = {9932-9947},
2330 Publisher = {AIP},
2331 Title = {Numerical calculation of the rate of crystal nucleation in a Lennard-Jones system at moderate undercooling},
2332 Url = {http://link.aip.org/link/?JCP/104/9932/1},
2333 Volume = {104},
2334 Year = {1996}}
2335
2336 @article{Cleveland:1997gu,
2337 Author = {Charles L. Cleveland and Uzi Landman and Marat N. Shafigullin and Peter W. Stephens and Robert L. Whetten},
2338 Date-Added = {2006-09-22 14:07:59 -0400},
2339 Date-Modified = {2007-02-16 15:23:00 -0500},
2340 Journal = {Z. Phys. D},
2341 Local-Url = {file://localhost/Users/charles/Documents/Papers/Cleveland/1997.pdf},
2342 Pages = {503-508},
2343 Title = {Structural evolution of larger gold clusters},
2344 Volume = {40},
2345 Year = {1997}}
2346
2347 @article{Breaux:rz,
2348 Author = {Gary A. Breaux and Baopeng Cao and Martin F. Jarrold},
2349 Date-Added = {2006-09-22 14:07:40 -0400},
2350 Date-Modified = {2007-02-16 15:23:00 -0500},
2351 Journal = {J. Phys. Chem. B},
2352 Local-Url = {file://localhost/Users/charles/Documents/Papers/Breaux/2005.pdf},
2353 Title = {Second-Order Phase Transitions in Amorphous Gallium Clusters},
2354 Volume = {10.1021/jp052887x},
2355 Year = {2005}}
2356
2357 @misc{Magruder:1994rg,
2358 Author = {Magruder, III, R. H. and Osborne, Jr. , D. H. and Zuhr, R. A.},
2359 Date-Added = {2006-09-22 14:07:26 -0400},
2360 Date-Modified = {2007-02-16 15:23:00 -0500},
2361 Journal = {Journal of Non-Crystalline Solids},
2362 Number = {2-3},
2363 Pages = {299 --303},
2364 Title = {Non-linear optical properties of nanometer dimension Ag---Cu particles in silica formed by sequential ion implantation},
2365 Ty = {JOUR},
2366 Url = {http://www.sciencedirect.com/science/article/B6TXM-48N5KMY-112/2/0e487c2fae5720cdcda8b63ff74b819f},
2367 Volume = {176},
2368 Year = {1994}}
2369
2370 @article{BenjaminGilbert07302004,
2371 Abstract = {Nanoparticles may contain unusual forms of structural disorder that can substantially modify materials properties and thus cannot solely be considered as small pieces of bulk material. We have developed a method to quantify intermediate-range order in 3.4-nanometer-diameter zinc sulfide nanoparticles and show that structural coherence is lost over distances beyond 2nanometers. The zinc-sulfur Einstein vibration frequency in the nanoparticles is substantially higher than that in the bulk zinc sulfide, implying structural stiffening. This cannot be explained by the observed 1% radial compression and must be primarily due to inhomogeneous internal strain caused by competing relaxations from an irregular surface. The methods developed here are generally applicable to the characterization of nanoscale solids, many of which may exhibit complex disorder and strain.
2372 },
2373 Author = {Gilbert, Benjamin and Huang, Feng and Zhang, Hengzhong and Waychunas, Glenn A. and Banfield, Jillian F.},
2374 Date-Added = {2006-09-22 14:07:15 -0400},
2375 Date-Modified = {2007-02-16 15:23:00 -0500},
2376 Eprint = {http://www.sciencemag.org/cgi/reprint/305/5684/651.pdf},
2377 Journal = {Science},
2378 Local-Url = {file://localhost/Users/charles/Documents/Papers/Gilbert/2004b.pdf},
2379 Number = {5684},
2380 Pages = {651-654},
2381 Title = {Nanoparticles: Strained and Stiff},
2382 Url = {http://www.sciencemag.org/cgi/content/abstract/305/5684/651},
2383 Volume = {305},
2384 Year = {2004}}
2385
2386 @article{sheng:184203,
2387 Author = {H. W. Sheng and J. H. He and E. Ma},
2388 Date-Added = {2006-09-22 14:07:07 -0400},
2389 Date-Modified = {2007-05-16 14:58:31 -0400},
2390 Eid = {184203},
2391 Journal = {Phys. Rev. B},
2392 Keywords = {silver alloys; copper alloys; rapid solidification; quenching (thermal); molecular dynamics method; crystal structure; amorphous state; short-range order},
2393 Local-Url = {file://localhost/Users/charles/Documents/Papers/Sheng/2002.pdf},
2394 Number = {18},
2395 Numpages = {10},
2396 Pages = {184203},
2397 Publisher = {APS},
2398 Title = {Molecular dynamics simulation studies of atomic-level structures in rapidly quenched Ag-Cu nonequilibrium alloys},
2399 Url = {http://link.aps.org/abstract/PRB/v65/e184203},
2400 Volume = {65},
2401 Year = {2002}}
2402
2403 @article{Chushak:2001ry,
2404 Author = {Y G Chushak and L S Bartell},
2405 Date-Added = {2006-09-22 14:07:00 -0400},
2406 Date-Modified = {2007-02-16 15:23:00 -0500},
2407 Journal = {J. Phys. Chem. B},
2408 Local-Url = {file://localhost/Users/charles/Documents/Papers/Chushak/2001.pdf},
2409 Number = {47},
2410 Pages = {11605-11614},
2411 Title = {Melting and Freezing of Gold Nanoclusters},
2412 Volume = {105},
2413 Year = {2001}}
2414
2415 @article{Hodak:2000rb,
2416 Author = {Jos\'{e} H. Hodak and Arnim Henglein and Michael Giersig and Gregory V. Hartland},
2417 Date-Added = {2006-09-22 14:06:51 -0400},
2418 Date-Modified = {2007-02-16 15:23:00 -0500},
2419 Journal = {J. Phys. Chem. B},
2420 Local-Url = {file://localhost/Users/charles/Documents/Papers/Hodak/2000.pdf},
2421 Pages = {11708 - 11718},
2422 Title = {Laser-Induced Inter-Diffusion in {A}u{A}g Core-Shell Nanoparticles},
2423 Volume = {104},
2424 Year = {2000}}
2425
2426 @article{Gafner:2004bg,
2427 Author = {Yu. Ya. Gafner and S. L. Gafner and P. Entel},
2428 Date-Added = {2006-09-22 14:06:33 -0400},
2429 Date-Modified = {2007-02-16 15:23:00 -0500},
2430 Journal = {Phys. Sol. State},
2431 Local-Url = {file://localhost/Users/charles/Documents/Papers/Gafner/2004a.pdf},
2432 Number = {7},
2433 Pages = {1327--1330},
2434 Title = {Formation of an Icosahedral Structure during Crystallization of Nickel Nanoclusters},
2435 Volume = {46},
2436 Year = {2004}}
2437
2438 @article{he:125507,
2439 Author = {J. H. He and H. W. Sheng and J. S. Lin and P. J. Schilling and R. C. Tittsworth and E. Ma},
2440 Date-Added = {2006-09-22 14:06:29 -0400},
2441 Date-Modified = {2007-02-16 15:23:00 -0500},
2442 Eid = {125507},
2443 Journal = {Physical Review Letters},
2444 Keywords = {solid solutions; silver alloys; copper alloys; quenching (thermal); EXAFS; X-ray scattering; solubility; simulation},
2445 Local-Url = {file://localhost/Users/charles/Documents/Papers/He/2002.pdf},
2446 Number = {12},
2447 Numpages = {4},
2448 Pages = {125507},
2449 Publisher = {APS},
2450 Title = {Homogeneity of a Supersaturated Solid Solution},
2451 Url = {http://link.aps.org/abstract/PRL/v89/e125507},
2452 Volume = {89},
2453 Year = {2002}}
2454
2455 @article{Vardeman-II:2001jn,
2456 Author = {C.~F. {Vardeman II} and J.~D. Gezelter},
2457 Date-Added = {2006-09-22 14:05:53 -0400},
2458 Date-Modified = {2007-03-12 17:38:32 -0400},
2459 Journal = {J. Phys. Chem. A},
2460 Local-Url = {file://localhost/Users/charles/Documents/Papers/Vardeman%20II/2001.pdf},
2461 Number = {12},
2462 Pages = {2568},
2463 Title = {Comparing models for diffusion in supercooled liquids: The eutectic composition of the {A}g-{C}u alloy},
2464 Volume = {105},
2465 Year = {2001}}
2466
2467 @article{Steinhardt:1983mo,
2468 Author = {P. J. Steinhardt and D. R. Nelson and M. Ronchetti},
2469 Date-Added = {2006-09-22 14:05:49 -0400},
2470 Date-Modified = {2007-02-16 15:23:00 -0500},
2471 Journal = {Phys. Rev. B},
2472 Local-Url = {file://localhost/Users/charles/Documents/Papers/1983.pdf},
2473 Number = {2},
2474 Pages = {784-804},
2475 Title = {Bond-Orientational order in liquids and glasses},
2476 Volume = {28},
2477 Year = {1983}}
2478
2479 @article{Ascencio:2000qy,
2480 Author = {Ascencio, Jorge A. and Perez, Mario and Jose-Yacaman, Miguel},
2481 Date-Added = {2006-09-22 14:05:27 -0400},
2482 Date-Modified = {2007-02-16 15:23:00 -0500},
2483 Journal = {Surface Science},
2484 Local-Url = {file://localhost/Users/charles/Documents/Papers/Ascencio/2000.pdf},
2485 Number = {1-3},
2486 Pages = {73 --80},
2487 Title = {A truncated icosahedral structure observed in gold nanoparticles},
2488 Ty = {JOUR},
2489 Url = {http://www.sciencedirect.com/science/article/B6TVX-3YKKDPN-F/2/18d016014a0c4b12954cb264d8688ecc},
2490 Volume = {447},
2491 Year = {2000}}
2492
2493 @article{Spohr:1995lr,
2494 Abstract = {A simple model for the interaction potential of water with a solid surface is proposed. Adsorption energy, surface structure, corrugation, and the orientational anisotropy of the interaction can be varied. The model is used to determine the dependence of the water/metal interfacial structure as a function of the adsorption energy. Adsorption of an iodide ion from the solution onto the surface is studied for two different water adsorption energies. The results confirm the interpretations of previous simulations, namely that the repulsive solvent contribution to the free energy of iodide adsorption is mostly due to the steric displacement of adsorbed water molecules.},
2495 Author = {Spohr, E.},
2496 Date-Added = {2006-08-21 18:29:05 -0400},
2497 Date-Modified = {2007-02-16 15:23:00 -0500},
2498 Journal = {Journal of Molecular Liquids},
2499 Local-Url = {file://localhost/Users/charles/Documents/Papers/sdarticle.pdf},
2500 Number = {1-2},
2501 Pages = {91--100},
2502 T2 = {Ultrafast Phenomena in Liquids and Glasses},
2503 Title = {Ion adsorption on metal surfaces. The role of water-metal interactions},
2504 Ty = {JOUR},
2505 Url = {http://www.sciencedirect.com/science/article/B6TGR-4002H6G-G/2/7b778ec712c1e86796cf919249d0f6a7},
2506 Volume = {64},
2507 Year = {1995}}
2508
2509 @comment{BibDesk Static Groups{
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2513 <array>
2514 <dict>
2515 <key>group name</key>
2516 <string>Amorphous Icosohedral order</string>
2517 <key>keys</key>
2518 <string>PhysRevLett.89.275502,Gafner:2004bg</string>
2519 </dict>
2520 <dict>
2521 <key>group name</key>
2522 <string>Citrate Capping</string>
2523 <key>keys</key>
2524 <string>http://dx.doi.org/10.1039/b312640b,PillaiZ.S._jp037018r,LarsonI._la970029p</string>
2525 </dict>
2526 <dict>
2527 <key>group name</key>
2528 <string>Cu-Ag glass</string>
2529 <key>keys</key>
2530 <string>PhysRevB.59.3527,najafabadi:3144,duwez:1136,Sheng:2002jo,Banhart:1992sv,Mazzone:1997pe</string>
2531 </dict>
2532 <dict>
2533 <key>group name</key>
2534 <string>Cu-Ag-Au clusters-theory</string>
2535 <key>keys</key>
2536 <string>cheng:064117,rapallo:194308,Chushak:2001ry,Breaux:rz,luo:145502,ganesh-2006-,rossi:105503,Hu:2005lr,Chen:2004ec</string>
2537 </dict>
2538 <dict>
2539 <key>group name</key>
2540 <string>Glass-Melting Transition</string>
2541 <key>keys</key>
2542 <string>HUNT:1994fj,Wang:2003fk,Alcoutlabi:2005kx,JACKSON:1991lr,HUNT:1992uq,Jiang:1999yq,Ojovan:2006vn</string>
2543 </dict>
2544 <dict>
2545 <key>group name</key>
2546 <string>Hartland Cites</string>
2547 <key>keys</key>
2548 <string>West:2003fk,Plech:2003yq,Plech:2007rt,Plech:2004vn,Wang:2003fk,Wilson:2002uq,Hodak:2000rb,Hu:2006lr,Dick:2002qy,Buffat:1976yq</string>
2549 </dict>
2550 <dict>
2551 <key>group name</key>
2552 <string>Icosahedral Order</string>
2553 <key>keys</key>
2554 <string>PhysRevLett.60.2295,hsu:4974,HOARE:1976fk,19871127,Balucani:1990fk,ganesh-2006-,PhysRevLett.53.1951,19521106,Waal:1995lr,Steinhardt:1983mo,PhysRevLett.56.1168,PhysRevLett.91.135505,turnbull:411,luo:131927</string>
2555 </dict>
2556 <dict>
2557 <key>group name</key>
2558 <string>Integrators</string>
2559 <key>keys</key>
2560 <string>Kohanoff:2005,Baltazar:2006lr,0953-8984-14-26-101</string>
2561 </dict>
2562 <dict>
2563 <key>group name</key>
2564 <string>Melting-surface</string>
2565 <key>keys</key>
2566 <string>PhysRevB.59.15990,cheng:064117,MainardiD.S._la0014306,kay:5120,Zhu:1997lr,sankaranarayanan:155441,Ramirez-Caballero:2006lr,HuangS.-P._jp0204206,mendez-villuendas:185503</string>
2567 </dict>
2568 <dict>
2569 <key>group name</key>
2570 <string>Metal-Water Surface</string>
2571 <key>keys</key>
2572 <string>kay:5120,SpohrE._j100353a043</string>
2573 </dict>
2574 <dict>
2575 <key>group name</key>
2576 <string>Nanoparticle Thermal</string>
2577 <key>keys</key>
2578 <string>PhysRevB.66.224301</string>
2579 </dict>
2580 <dict>
2581 <key>group name</key>
2582 <string>NPT Langevin</string>
2583 <key>keys</key>
2584 <string>calvo:125414,Kohanoff:2005,0953-8984-18-39-037,0031-9155-41-9-016,Buscaglia:1997fk,0953-8984-14-26-101,Baltazar:2006lr</string>
2585 </dict>
2586 <dict>
2587 <key>group name</key>
2588 <string>Pair Analysis</string>
2589 <key>keys</key>
2590 <string>PhysRevLett.60.2295,Iwamatsu:2007lr,HoneycuttJ.Dana_j100303a014,Miracle:2006qy</string>
2591 </dict>
2592 <dict>
2593 <key>group name</key>
2594 <string>Surface Tension</string>
2595 <key>keys</key>
2596 <string>PhysRevLett.75.4043,Chen:2001qy,neubauer:046106,0957-0233-16-2-015,0965-0393-7-2-005</string>
2597 </dict>
2598 <dict>
2599 <key>group name</key>
2600 <string>Thiol-Metal</string>
2601 <key>keys</key>
2602 <string>LuedtkeW.D._jp981745i,LuedtkeW.D._jp961721g,MahaffyR._jp962281w</string>
2603 </dict>
2604 </array>
2605 </plist>
2606 }}