Water clusters: Difference between revisions
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*[[Water clusters: TIP4P model | TIP4P model]] | *[[Water clusters: TIP4P model | TIP4P model]] | ||
*[[Water clusters: TIP5P model | TIP5P model]] | *[[Water clusters: TIP5P model | TIP5P model]] | ||
==Related reading== | |||
*[http://www3.interscience.wiley.com/journal/48543/abstract J. A. Niesse and Howard R. Mayne "Global optimization of atomic and molecular clusters using the space-fixed modified genetic algorithm method", Journal of Computational Chemistry '''18''' pp. 1233-1244 (1997)] | |||
*[http://dx.doi.org/10.1016/S0009-2614(98)00065-7 David J. Wales and Matthew P. Hodges "Global minima of water clusters (H2O)n, n≤21, described by an empirical potential", Chemical Physics Letters '''286''' pp. 65-72 (1998)] | |||
*[http://dx.doi.org/10.1021/jp027783q H. Kabrede and R. Hentschke "Global Minima of Water Clusters (H2O)N, N ≤ 25, Described by Three Empirical Potentials", Journal of Physical Chemistry B '''107''' pp. 3914-3920 (2003)] | |||
[[category: water]] | [[category: water]] |
Revision as of 16:44, 20 July 2009
Global minima structures
- TIP3P model (note: the following page contains 18 Java applets and may take a while to load).
- TIP4P model
- TIP5P model
Related reading
- J. A. Niesse and Howard R. Mayne "Global optimization of atomic and molecular clusters using the space-fixed modified genetic algorithm method", Journal of Computational Chemistry 18 pp. 1233-1244 (1997)
- David J. Wales and Matthew P. Hodges "Global minima of water clusters (H2O)n, n≤21, described by an empirical potential", Chemical Physics Letters 286 pp. 65-72 (1998)
- H. Kabrede and R. Hentschke "Global Minima of Water Clusters (H2O)N, N ≤ 25, Described by Three Empirical Potentials", Journal of Physical Chemistry B 107 pp. 3914-3920 (2003)