Muniz Maria Carolina, Gartner Thomas E, Riera Marc, Knight Christopher, Yue Shuwen, Paesani Francesco, Panagiotopoulos Athanassios Z
Department of Chemical and Biological Engineering, Princeton University, Princeton, New Jersey 08544, USA.
Department of Chemistry, Princeton University, Princeton, New Jersey 08544, USA.
J Chem Phys. 2021 Jun 7;154(21):211103. doi: 10.1063/5.0050068.
Among the many existing molecular models of water, the MB-pol many-body potential has emerged as a remarkably accurate model, capable of reproducing thermodynamic, structural, and dynamic properties across water's solid, liquid, and vapor phases. In this work, we assessed the performance of MB-pol with respect to an important set of properties related to vapor-liquid coexistence and interfacial behavior. Through direct coexistence classical molecular dynamics simulations at temperatures of 400 K < T < 600 K, we calculated properties such as equilibrium coexistence densities, vapor-liquid interfacial tension, vapor pressure, and enthalpy of vaporization and compared the MB-pol results to experimental data. We also compared rigid vs fully flexible variants of the MB-pol model and evaluated system size effects for the properties studied. We found that the MB-pol model predictions are in good agreement with experimental data, even for temperatures approaching the vapor-liquid critical point; this agreement was largely insensitive to system sizes or the rigid vs flexible treatment of the intramolecular degrees of freedom. These results attest to the chemical accuracy of MB-pol and its high degree of transferability, thus enabling MB-pol's application across a large swath of water's phase diagram.
在众多现有的水的分子模型中,MB-pol多体势已成为一个非常精确的模型,能够再现水在固相、液相和气相中的热力学、结构和动力学性质。在这项工作中,我们评估了MB-pol在与气液共存和界面行为相关的一组重要性质方面的性能。通过在400 K < T < 600 K温度下进行直接共存经典分子动力学模拟,我们计算了平衡共存密度、气液界面张力、蒸气压和汽化焓等性质,并将MB-pol的结果与实验数据进行了比较。我们还比较了MB-pol模型的刚性变体和完全柔性变体,并评估了所研究性质的系统尺寸效应。我们发现,即使在接近气液临界点的温度下,MB-pol模型的预测结果也与实验数据吻合良好;这种吻合在很大程度上对系统尺寸或分子内自由度的刚性与柔性处理不敏感。这些结果证明了MB-pol的化学准确性及其高度的可转移性,从而使得MB-pol能够应用于水相图的大片区域。