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质子化水团簇中固-液相转变的理论研究。

Theoretical investigation of the solid-liquid phase transition in protonated water clusters.

作者信息

Korchagina Kseniia, Simon Aude, Rapacioli Mathias, Spiegelman Fernand, L'Hermite Jean-Marc, Braud Isabelle, Zamith Sébastien, Cuny Jérôme

机构信息

Laboratoire de Chimie et Physique Quantiques (LCPQ/IRSAMC), Université de Toulouse and CNRS, 118 Route de Narbonne, F-31062 Toulouse, France.

出版信息

Phys Chem Chem Phys. 2017 Oct 18;19(40):27288-27298. doi: 10.1039/c7cp04863g.

Abstract

Protonated water clusters have received a lot of attention as they offer tools to bridge the gap between molecular and bulk scales of water. However, their properties are still not fully understood and deserve further theoretical and experimental investigations. In this work, we simulate the caloric curves of protonated water clusters (HO)H (n = 20-23). These curves, which have recently been measured experimentally, are characteristic of the phase changes occurring in the aggregates with respect to temperature. The present simulations are achieved by combining parallel-tempering molecular dynamics and the self-consistent-charge density-functional based tight-binding approach and are focused on a restricted size range around (HO)H which presents singular properties. The shape of the experimental caloric curves and their size dependence are satisfactorily reproduced by the simulations which allows us to further provide a description of the phase transition in terms of structural modifications, dynamics of water molecules and proton mobility. Similar to the experiments, we observe that (HO)H exhibits a sharper phase transition than the neighbouring size clusters, which can be traced back to both structural and dynamic peculiarities.

摘要

质子化水团簇受到了广泛关注,因为它们为弥合水的分子尺度和宏观尺度之间的差距提供了工具。然而,它们的性质仍未得到充分理解,值得进一步进行理论和实验研究。在这项工作中,我们模拟了质子化水团簇(HO)H(n = 20 - 23)的热曲线。这些曲线最近已通过实验测量得到,它们是聚集体中随温度发生的相变的特征。目前的模拟是通过结合并行回火分子动力学和基于自洽电荷密度泛函的紧束缚方法实现的,并且聚焦于(HO)H周围呈现奇异性质的有限尺寸范围。模拟结果令人满意地再现了实验热曲线的形状及其尺寸依赖性,这使我们能够进一步从结构修饰、水分子动力学和质子迁移率方面对相变进行描述。与实验类似,我们观察到(HO)H比相邻尺寸的团簇表现出更尖锐的相变,这可追溯到结构和动力学的特殊性。

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