Comparison of simple potential functions for simulating liquid water

Сравнение простых потенциальных функций для моделирования жидкой воды
William L. Jorgensen, Jayaraman Chandrasekhar, Jeffry D. Madura, Roger Impey, Michael L. Klein
1983-07-15

SPCTIP4Pintermolecular potential functionsliquid water simulationsneutron diffraction structure functions
Classical Monte Carlo simulations have been carried out for liquid water in the NPT ensemble at 25 °C and 1 atm using six of the simpler intermolecular potential functions for the water dimer: Bernal–Fowler (BF), SPC, ST2, TIPS2, TIP3P, and TIP4P. Comparisons are made with experimental thermodynamic and structural data including the recent neutron diffraction results of Thiessen and Narten. The computed densities and potential energies are in reasonable accord with experiment except for the original BF model, which yields an 18% overestimate of the density and poor structural results. The TIPS2 and TIP4P potentials yield oxygen–oxygen partial structure functions in good agreement with the neutron diffraction results. The accord with the experimental OH and HH partial structure functions is poorer; however, the computed results for these functions are similar for all the potential functions. Consequently, the discrepancy may be due to the correction terms needed in processing the neutron data or to an effect uniformly neglected in the computations. Comparisons are also made for self-diffusion coefficients obtained from molecular dynamics simulations. Overall, the SPC, ST2, TIPS2, and TIP4P models give reasonable structural and thermodynamic descriptions of liquid water and they should be useful in simulations of aqueous solutions. The simplicity of the SPC, TIPS2, and TIP4P functions is also attractive from a computational standpoint.
1
All models show poorer agreement with experimental OH and HH partial structure functions, with similar computed results across potentials, suggesting experimental correction terms or a uniformly neglected computational effect.
2
Classical NPT Monte Carlo simulations at 25 °C and 1 atm were performed for six simple water potentials: BF, SPC, ST2, TIPS2, TIP3P, TIP4P.
3
Computed densities and potential energies agree reasonably with experiment for all models except the original BF, which overestimates density by 18% and gives poor structural results.
4
SPC, ST2, TIPS2, and TIP4P provide reasonable structural and thermodynamic descriptions and are recommended for aqueous simulations; SPC, TIPS2, and TIP4P are computationally attractive due to simplicity.
5
TIPS2 and TIP4P reproduce oxygen–oxygen partial structure functions in good agreement with recent neutron diffraction results (Thiessen and Narten).

Liquid water modeled with simple intermolecular potential functions (BF, SPC, ST2, TIPS2, TIP3P, TIP4P)

Comparison of the structural, thermodynamic, and dynamic properties (density, potential energy, partial structure functions OO/OH/HH, and self-diffusion coefficients) predicted by the simple water potential models against experimental data

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1983-07-15
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William L. Jorgensen
Jayaraman Chandrasekhar
Jeffry D. Madura
Roger Impey
Michael L. Klein
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