A molecular dynamics simulation of a water model with intramolecular degrees of freedom
- 1 January 1987
- journal article
- research article
- Published by Taylor & Francis in Molecular Physics
- Vol. 60 (1), 193-203
- https://doi.org/10.1080/00268978700100141
Abstract
Simulations of water models with and without intramolecular degrees of freedom have been performed within the classical approximation. Three H2O simulations with interaction parameters taken from a simple point charge model due to Berendsen et al. are reported: (i) with rigid water molecules, (ii) with flexible water molecules and (iii) with rigid water molecules and polarized bond lengths and bond angles obtained from the second simulation. The most important effect of the inclusion of intramolecular vibrations is seen on transport properties, which in general become a foctor of 2-3 faster. The internal vibrations lead to a small but significant lowering of the potential energy and also reduce the structure, as seen from atom-atom distribution functions. The dipole moment fluctuations are affected by the nuclear polarization caused by the intermolecular interactions. Two D2O simulation have been performed in order to assess the effects of isotope substitution, one with rigid molecules and the other with flexible.Keywords
This publication has 28 references indexed in Scilit:
- A local mode potential function for the water moleculeMolecular Physics, 1984
- Revised TIPS for simulations of liquid water and aqueous solutionsThe Journal of Chemical Physics, 1982
- Quantum and statistical mechanical studies of liquids. 10. Transferable intermolecular potential functions for water, alcohols, and ethers. Application to liquid waterJournal of the American Chemical Society, 1981
- Revised central force potentials for waterThe Journal of Chemical Physics, 1978
- An accurate potential for deformable water moleculesChemical Physics, 1977
- CI study of the water dimer potential surfaceThe Journal of Chemical Physics, 1976
- Study of a central force model for liquid water by molecular dynamicsThe Journal of Chemical Physics, 1975
- Central-force model for liquid waterThe Journal of Chemical Physics, 1975
- Theory and Molecular Models for WaterAdvances in Chemical Physics, 1975
- Improved simulation of liquid water by molecular dynamicsThe Journal of Chemical Physics, 1974