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冰的相图:基于柔性水模型的准谐研究。

The phase diagram of ice: a quasi-harmonic study based on a flexible water model.

机构信息

Instituto de Ciencia de Materiales de Madrid (ICMM), Consejo Superior de Investigaciones Científicas (CSIC), Campus de Cantoblanco, 28049 Madrid, Spain.

出版信息

J Chem Phys. 2013 Aug 28;139(8):084503. doi: 10.1063/1.4818875.

Abstract

The phase diagram of ice is studied by a quasi-harmonic approximation. The free energy of all experimentally known ice phases has been calculated with the flexible q-TIP4P/F model of water. The only exception is the high pressure ice X, in which the presence of symmetric O-H-O bonds prevents its modeling with this empirical interatomic potential. The simplicity of our approach allows us to study ice phases at state points of the T-P plane that have been omitted in previous simulations using free energy methods based on thermodynamic integration. The effect in the phase diagram of averaging the proton disorder that appears in several ice phases has been studied. It is found particularly relevant for ice III, at least for cell sizes typically used in phase coexistence simulations. New insight into the capability of the employed water model to describe the coexistence of ice phases is presented. We find that the H-ordered ices IX and XIV, as well as the H-disordered ice XII, are particularly stable for this water model. This fact disagrees with experimental data. The unexpected large stability of ice IX is a property related to the TIP4P-character of the water model. Only after omission of these three stable ice phases, the calculated phase diagram becomes in reasonable qualitative agreement to the experimental one in the T-P region corresponding to ices Ih, II, III, V, and VI. The calculation of the phase diagram in the quantum and classical limits shows that the most important quantum effect is the stabilization of ice II due to its lower zero-point energy when compared to that one of ices Ih, III, and V.

摘要

采用准谐近似研究冰的相图。利用灵活的 q-TIP4P/F 水分子模型计算了所有实验已知冰相的自由能。唯一的例外是高压冰 X,由于其对称的 O-H-O 键的存在,阻止了用这种经验原子间势对其进行建模。我们的方法很简单,可以在 T-P 平面上的状态点研究以前基于热力学积分的自由能方法模拟中忽略的冰相。研究了在几个冰相中出现的质子无序平均化对相图的影响。结果表明,对于冰 III,至少对于相共存模拟中通常使用的细胞大小,这种影响特别显著。介绍了所采用的水分子模型描述冰相共存的能力的新见解。我们发现,有序的冰 IX 和 XIV 以及无序的冰 XII 对于这种水分子模型特别稳定。这与实验数据不一致。出乎意料的是,冰 IX 的稳定性很大,这是与水分子模型的 TIP4P 性质有关的性质。只有在忽略这三种稳定冰相之后,计算出的相图在与 Ih、II、III、V 和 VI 冰相对应的 T-P 区域内与实验相图在定性上才具有合理的一致性。在量子和经典极限下计算相图表明,最重要的量子效应是由于冰 II 的零点能较低,使其稳定化,与 Ih、III 和 V 冰相比。

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