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首页> 外文期刊>The Journal of Chemical Physics >On the accuracy of the MB-pol many-body potential for water: Interaction energies, vibrational frequencies, and classical thermodynamic and dynamical properties from clusters to liquid water and ice
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On the accuracy of the MB-pol many-body potential for water: Interaction energies, vibrational frequencies, and classical thermodynamic and dynamical properties from clusters to liquid water and ice

机译:关于MB-pol多体水势的准确性:相互作用能,振动频率以及从团簇到液态水和冰的经典热力学和动力学性质

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摘要

The MB-pol many-body potential has recently emerged as an accurate molecular model for water simulations from the gas to the condensed phase. In this study, the accuracy of MB-pol is systematically assessed across the three phases of water through extensive comparisons with experimental data and high-level ab initio calculations. Individual many-body contributions to the interaction energies as well as vibrational spectra of water clusters calculated with MB-pol are in excellent agreement with reference data obtained at the coupled cluster level. Several structural, thermodynamic, and dynamical properties of the liquid phase at atmospheric pressure are investigated through classical molecular dynamics simulations as a function of temperature. The structural properties of the liquid phase are in nearly quantitative agreement with X-ray diffraction data available over the temperature range from 268 to 368 K. The analysis of other thermodynamic and dynamical quantities emphasizes the importance of explicitly including nuclear quantum effects in the simulations, especially at low temperature, for a physically correct description of the properties of liquid water. Furthermore, both densities and lattice energies of several ice phases are also correctly reproduced by MB-pol. Following a recent study of DFT models for water, a score is assigned to each computed property, which demonstrates the high and, in many respects, unprecedented accuracy of MB-pol in representing all three phases of water. Published by AIP Publishing.
机译:MB-pol多体势最近已成为一种精确的分子模型,用于从气体到冷凝相的水模拟。在这项研究中,通过与实验数据和高级从头算的广泛比较,系统地评估了水在三个阶段中MB-pol的准确性。用MB-pol计算的水团簇的相互作用能以及振动谱的个体多体贡献与在耦合团簇水平获得的参考数据非常一致。通过经典的分子动力学模拟,研究了大气压下液相的几种结构,热力学和动力学性质,它们是温度的函数。液相的结构性质与在268至368 K的温度范围内可获得的X射线衍射数据几乎定量一致。对其他热力学和动力学量的分析强调了在模拟中明确包括核量子效应的重要性,为了在物理上正确描述液态水的特性,特别是在低温下。此外,MB-pol也正确地再现了多个冰相的密度和晶格能。在最近对水的DFT模型进行研究之后,为每个计算的属性分配了一个分数,这证明了MB-pol在代表水的所有三个阶段时都具有很高的准确性,并且在许多方面都达到了前所未有的准确性。由AIP Publishing发布。

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