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Ab Initio Molecular Dynamics Simulations of the Influenceof Lithium Bromide on the Structure of the Aqueous Solution–AirInterface

机译:从头开始的分子动力学模拟的影响溴化锂对水溶液-空气结构的影响接口

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摘要

We present the results of ab initio molecular dynamics simulations of the solution–air interface of aqueous lithium bromide (LiBr). We find that, in agreement with the experimental data and previous simulation results with empirical polarizable force field models, Br anions prefer to accumulate just below the first molecular water layer near the interface, whereas Li+ cations remain deeply buried several molecular layers from the interface, even at very high concentration. The separation of ions has a profound effect on the average orientation of water molecules in the vicinity of the interface. We also find that the hydration number of Li+ cations in the center of the slab Nc,Li+–H2O ≈ 4.7 ± 0.3, regardless of the salt concentration. This estimate is consistent with the recent experimental neutron scattering data, confirming that results from nonpolarizable empirical models, which consistently predict tetrahedral coordination of Li+ to four solvent molecules, are incorrect. Consequently, disruption of the hydrogen bond network caused by Li+ may be overestimated in nonpolarizable empiricalmodels. Overall, our results suggest that empirical models, in particularnonpolarizable models, may not capture all of the properties of thesolution–air interface necessary to fully understand the interfacialchemistry.
机译:我们介绍了溴化锂水溶液(LiBr)的溶液-空气界面的从头算分子动力学模拟的结果。我们发现,与实验数据和先前的经验可极化极化力场模型的模拟结果相一致,Br 阴离子倾向于在界面附近的第一分子水层下方蓄积,而Li + 阳离子即使在非常高的浓度下也仍会从界面深深地掩埋在几个分子层中。离子的分离对界面附近水分子的平均取向有深远的影响。我们还发现,无论盐浓度如何,在平板Nc中心的Li + 阳离子的水合数,Li + -H2O≈4.7±0.3。这一估计与最近的实验中子散射数据一致,证实了非极化经验模型的结果是错误的,该模型始终预测Li + 与四个溶剂分子的四面体配位。因此,在不可极化的经验中,可能会高估由Li + 引起的氢键网络破坏。楷模。总体而言,我们的结果表明,经验模型尤其是非极化模型,可能无法捕获解决方案–充分了解界面所必需的空中接口化学。

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