TIP4P/Ice model of water: Difference between revisions
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| 0.9572 || 104.52 || 3.1668 || 106.1 || 0 || 0.5897 || -2q(H) || 0.1577 | | 0.9572 || 104.52 || 3.1668 || 106.1 || 0 || 0.5897 || -2q(H) || 0.1577 | ||
|} | |} | ||
*[[DL_POLY FIELD file for the TIP4P/ice model]] | |||
*[[GROMACS topology file for the TIP4P/ice model]] | |||
==References== | ==References== | ||
*[http://dx.doi.org/10.1063/1.1931662 L. F. Abascal, E. Sanz, R. García Fernández, and C. Vega "A potential model for the study of ices and amorphous water: TIP4P/Ice", Journal of Chemical Physics, '''122''' 234511 (2005)] | *[http://dx.doi.org/10.1063/1.1931662 L. F. Abascal, E. Sanz, R. García Fernández, and C. Vega "A potential model for the study of ices and amorphous water: TIP4P/Ice", Journal of Chemical Physics, '''122''' 234511 (2005)] |
Revision as of 15:36, 11 July 2008
The TIP4P/ice model is a re-parameterisation of the original TIP4P potential for simulations of ice phases. TIP4P/ice is a rigid planar model, having a similar geometry to the Bernal and Fowler (BF) model.
Parameters
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(Å) | HOH , deg | (Å) | (K) | q(O) (e) | q(H) (e) | q(M) (e) | (Å) |
0.9572 | 104.52 | 3.1668 | 106.1 | 0 | 0.5897 | -2q(H) | 0.1577 |
References
- L. F. Abascal, E. Sanz, R. García Fernández, and C. Vega "A potential model for the study of ices and amorphous water: TIP4P/Ice", Journal of Chemical Physics, 122 234511 (2005)
- C. Vega, J. L. F. Abascal and I. Nezbeda, "Vapor-liquid equilibria from the triple point up to the critical point for the new generation of TIP4P-like models: TIP4P/Ew, TIP4P/2005, and TIP4P/ice", Journal of Chemical Physics, 125 034503 (2006)