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水中氯化钠的自由能分布:采用SCAN和ωB97X-V交换相关泛函的第一性原理分子动力学

Free Energy Profile of NaCl in Water: First-Principles Molecular Dynamics with SCAN and ωB97X-V Exchange-Correlation Functionals.

作者信息

Yao Yi, Kanai Yosuke

机构信息

Department of Chemistry, University of North Carolina , Chapel Hill, North Carolina 27599, United States.

出版信息

J Chem Theory Comput. 2018 Feb 13;14(2):884-893. doi: 10.1021/acs.jctc.7b00846. Epub 2018 Jan 16.

Abstract

Properties of water and aqueous ionic solutions are of great scientific interest because they play a central role in the atmosphere, biological environments, and various industrial processes. Employing two advanced exchange-correlation (XC) approximations, ωB97X-V and SCAN, in first-principles molecular dynamics simulations, we calculate the potential of mean force of NaCl in water as a function of the ion separation distance. Compared to the commonly used GGA-PBE functional, both of these XC functionals perform much better in simulating liquid water at room temperature for obtaining structural properties. The potential of mean force of NaCl in water exhibits two minima corresponding to two distinct types of ion pairing. ωB97X-V predicts that the contact ion pair is energetically more stable than the solvent-separated ion pair. The SCAN functional, however, predicts the opposite stability order, similarly to other XC functionals such as PBE. This is notable especially since classical molecular dynamics simulations with widely used force-field models predict greater stability for the contact ion pair. We also discuss how the electronic structures of water molecules and ions depend on the XC approximations. ωB97X-V and SCAN approximations noticeably improve the description of electron charge on Cl ion in water while the charge on Na ion does not vary appreciably among the three XC functionals.

摘要

水和离子水溶液的性质具有重大的科学意义,因为它们在大气、生物环境和各种工业过程中起着核心作用。在第一性原理分子动力学模拟中,我们采用两种先进的交换关联(XC)近似方法,即ωB97X-V和SCAN,计算了水中NaCl的平均力势随离子间距的变化。与常用的广义梯度近似(GGA)-PBE泛函相比,这两种XC泛函在模拟室温下的液态水以获得结构性质方面表现得更好。水中NaCl的平均力势呈现出两个最小值,对应于两种不同类型的离子对。ωB97X-V预测接触离子对比溶剂分隔离子对在能量上更稳定。然而,SCAN泛函预测的稳定性顺序相反,这与其他XC泛函(如PBE)类似。这一点尤其值得注意,因为使用广泛的力场模型进行的经典分子动力学模拟预测接触离子对具有更高的稳定性。我们还讨论了水分子和离子的电子结构如何依赖于XC近似。ωB97X-V和SCAN近似显著改善了对水中Cl离子上电子电荷的描述,而在这三种XC泛函中,Na离子上的电荷变化不明显。

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