Engineering a simple polarizable model for the molecular simulation of water applicable over wide ranges of state conditions

被引:149
作者
Chialvo, AA [1 ]
Cummings, PT [1 ]
机构
[1] OAK RIDGE NATL LAB, DIV CHEM TECHNOL, OAK RIDGE, TN 37831 USA
关键词
D O I
10.1063/1.472718
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We perform a systematic analysis of the relationship between the molecular geometry, the force-field parameters, the magnitude of the induced dipoles, and the resulting site-site microstructure of a model for water consisting of simple point charges plus a self-consistent point dipole polarizability. We constrain the model to represent the experimental values of the pressure and the configurational internal energy of water at ambient conditions, while keeping a permanent dipole moment of 1.85 D. The resulting force fields are then used to perform additional simulations at high temperature to determine the effect of polarizabilities on the site-site structure, and to make contact with neutron scattering experiments as well as ab initio simulation results. We show that the parameterization of the model is possible for 0 less than or equal to R(OM)less than or equal to 0.25 Angstrom, where R(OM) is the oxygen-to-negative charge distance along the bisectrix of the H-O-H angle, resulting in total dipole moments from 2.88 to 3.03 D, with polarization energies accounting for 40%-57% of the total configuration internal energy of water. These results, in conjunction with the behavior of the short range site-site correlation functions, highlight the shortcomings of the simple point charge approximation for the polarization behavior at short intermolecular distances, and give a meaningful reference from which we can attempt to overcome these defects. (C) 1996 American Institute of Physics.
引用
收藏
页码:8274 / 8281
页数:8
相关论文
共 46 条
[31]   DETERMINATION OF FORCE-FIELD PARAMETERS FOR MOLECULAR SIMULATION BY MOLECULAR SIMULATION - AN APPLICATION OF THE WEAK-COUPLING METHOD [J].
NJO, SL ;
VANGUNSTEREN, WF ;
MULLERPLATHE, F .
JOURNAL OF CHEMICAL PHYSICS, 1995, 102 (15) :6199-6207
[32]   THE INTERATOMIC STRUCTURE OF WATER AT SUPERCRITICAL TEMPERATURES [J].
POSTORINO, P ;
TROMP, RH ;
RICCI, MA ;
SOPER, AK ;
NEILSON, GW .
NATURE, 1993, 366 (6456) :668-670
[33]   DYNAMICAL FLUCTUATING CHARGE FORCE-FIELDS - APPLICATION TO LIQUID WATER [J].
RICK, SW ;
STUART, SJ ;
BERNE, BJ .
JOURNAL OF CHEMICAL PHYSICS, 1994, 101 (07) :6141-6156
[34]   A POLARIZABLE WATER MODEL FOR CALCULATION OF HYDRATION ENERGIES [J].
RULLMANN, JAC ;
VANDUIJNEN, PT .
MOLECULAR PHYSICS, 1988, 63 (03) :451-475
[35]   A NEW DETERMINATION OF THE STRUCTURE OF WATER AT 25-DEGREES-C [J].
SOPER, AK ;
PHILLIPS, MG .
CHEMICAL PHYSICS, 1986, 107 (01) :47-60
[36]   HYDROGEN-BONDING AND THE STATIC DIELECTRIC-CONSTANT IN LIQUID WATER [J].
SPRIK, M .
JOURNAL OF CHEMICAL PHYSICS, 1991, 95 (09) :6762-6769
[37]   A POLARIZABLE MODEL FOR WATER USING DISTRIBUTED CHARGE SITES [J].
SPRIK, M ;
KLEIN, ML .
JOURNAL OF CHEMICAL PHYSICS, 1988, 89 (12) :7556-7560
[38]   REACTION FIELD SIMULATION OF WATER [J].
STEINHAUSER, O .
MOLECULAR PHYSICS, 1982, 45 (02) :335-348
[39]   IMPROVED SIMULATION OF LIQUID WATER BY MOLECULAR-DYNAMICS [J].
STILLINGER, FH ;
RAHMAN, A .
JOURNAL OF CHEMICAL PHYSICS, 1974, 60 (04) :1545-1557
[40]   WATER REVISITED [J].
STILLINGER, FH .
SCIENCE, 1980, 209 (4455) :451-457