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通讯:长时间非平衡从头算分子动力学中外加静电场和交流电场对水的影响。

Communication: Influence of external static and alternating electric fields on water from long-time non-equilibrium ab initio molecular dynamics.

机构信息

School of Chemical and Bioprocess Engineering, University College Dublin, Belfield Dublin 4, Ireland.

出版信息

J Chem Phys. 2017 Jul 21;147(3):031102. doi: 10.1063/1.4994694.

Abstract

The response of water to externally applied electric fields is of central relevance in the modern world, where many extraneous electric fields are ubiquitous. Historically, the application of external fields in non-equilibrium molecular dynamics has been restricted, by and large, to relatively inexpensive, more or less sophisticated, empirical models. Here, we report long-time non-equilibrium ab initio molecular dynamics in both static and oscillating (time-dependent) external electric fields, therefore opening up a new vista in rigorous studies of electric-field effects on dynamical systems with the full arsenal of electronic-structure methods. In so doing, we apply this to liquid water with state-of-the-art non-local treatment of dispersion, and we compute a range of field effects on structural and dynamical properties, such as diffusivities and hydrogen-bond kinetics.

摘要

水对外加电场的响应在现代世界中至关重要,因为许多外部电场无处不在。从历史上看,在非平衡分子动力学中外加场的应用基本上局限于相对便宜、或多或少复杂的经验模型。在这里,我们报告了静态和振荡(时变)外电场中的长时间非平衡从头分子动力学,因此为用全电子结构方法研究电场对动力学系统的影响开辟了一个新的视角。为此,我们将其应用于具有最新非局域色散处理的液态水,并计算了一系列场效应对结构和动力学性质的影响,例如扩散率和氢键动力学。

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