1 |
These are sample files used to demonstrate the Langevin Hull isobaric-isothermal ensemble. All files are equilibrated at their stated conditions. |
2 |
|
3 |
Input File Composition Bath Properties |
4 |
|
5 |
spce_1atm.md 1372 SPC/E cluster 1 atm, 300 K, 0.0089 Poise (viscosity of water) |
6 |
spce_100atm.md 1372 SPC/E cluster 100 atm, 300 K, 0.0089 Poise |
7 |
|
8 |
Au_300K.md 20 A radius gold nanoparticle 4 GPa, 300K, 0.0089 Poise |
9 |
Au_lowvisc.md 40 A radius gold nanoparticle 4 GPa, 400K, 0.0089 Poise |
10 |
Au_highvisc.md 40 A radius gold nanoparticle 4 GPa, 400K, 0.07288 Poise |
11 |
|
12 |
spce_Au_1atm.md 18 A radius gold nanoparticle 1 atm, 300K, 0.0089 Poise |
13 |
surrounded by SPC/E water |
14 |
spce_Au_100atm.md 18 A radius gold nanoparticle 100 atm, 300K, 0.0089 Poise |
15 |
surrounded by SPC/E water |
16 |
|
17 |
|
18 |
You can vary conditions to see how nanoparticle size or bath viscosity affect the system's response to changes in temperature or pressure. |
19 |
Thermal equilibration is dependent on exposed surface area and bath viscosity. |
20 |
|
21 |
|
22 |
|