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可以使用经典模拟来描述天然气水合物结构吗?

Can gas hydrate structures be described using classical simulations?

机构信息

Dept. Química-Física I, Facultad de Ciencias Químicas, Universidad Complutense de Madrid, 28040 Madrid, Spain.

出版信息

J Chem Phys. 2010 Mar 21;132(11):114503. doi: 10.1063/1.3353953.

Abstract

Quantum path-integral simulations of the hydrate solid structures have been performed using the recently proposed TIP4PQ/2005 model. By also performing classical simulations using this model, the impact of the nuclear quantum effects on the hydrates is highlighted; nuclear quantum effects significantly modify the structure, densities, and energies of the hydrates, leading to the conclusion that nuclear quantum effects are important not only when studying the solid phases of water but also when studying the hydrates. To analyze the validity of a classical description of hydrates, a comparison of the results of the TIP4P/2005 model (optimized for classical simulations) with those of TIP4PQ/2005 (optimized for path-integral simulations) was undertaken. A classical description of hydrates is able to correctly predict the densities at temperatures above 150 K and the relative stabilities between the hydrates and ice I(h). The inclusion of nuclear quantum effects does not significantly modify the sequence of phases found in the phase diagram of water at negative pressures, namely, I(h)-->sII-->sH. In fact the transition pressures are little affected by the inclusion of nuclear quantum effects; the phase diagram predictions for hydrates can be performed with reasonable accuracy using classical simulations. However, for a reliable calculation of the densities below 150 K, the sublimation energies, the constant pressure heat capacity, and the radial distribution functions, the incorporation of nuclear quantum effects is indeed required.

摘要

已使用最近提出的 TIP4PQ/2005 模型对水合物固体结构进行量子路径积分模拟。通过使用该模型还进行经典模拟,突出了核量子效应对水合物的影响;核量子效应对水合物的结构、密度和能量有重大影响,得出的结论是,核量子效应不仅在研究水的固相时很重要,而且在研究水合物时也很重要。为了分析对水合物进行经典描述的有效性,对 TIP4P/2005 模型(针对经典模拟进行了优化)与 TIP4PQ/2005 模型(针对路径积分模拟进行了优化)的结果进行了比较。水合物的经典描述能够正确预测 150 K 以上温度下的密度以及水合物和冰 Ih 之间的相对稳定性。包括核量子效应不会显著改变在负压力下水的相图中发现的相序列,即 Ih--->sII-->sH。实际上,包括核量子效应几乎不会影响过渡压力;可以使用经典模拟以合理的精度对水合物的相图进行预测。然而,对于可靠地计算 150 K 以下的密度、升华能、定压热容和径向分布函数,确实需要考虑核量子效应。

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