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Modeling the hydration of mono-atomic anions from the gas phase to the bulk phase: The case of the halide ions F~-, Cl~-, and Br~-

机译:模拟单原子阴离子从气相到本体相的水合作用:卤离子F〜-,Cl〜-和Br〜-的情况

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摘要

In this work, we investigate the hydration of the halide ions fluoride, chloride, and bromide using classical molecular dynamics simulations at the 10 ns scale and based on a polarizable force-field approach, which treats explicitly the cooperative bond character of strong hydrogen bond networks. We have carried out a thorough analysis of the ab initio data at the MP2 or CCSD(T) level concerning anion/water clusters in gas phase to adjust the force-field parameters. In particular, we consider the anion static polarizabilities computed in gas phase using large atomic basis sets including additional diffuse functions. The information extracted from trajectories in solution shows well structured first hydration shells formed of 6.7, 7.0, and 7.6 water molecules at about 2.78 ?, 3.15 ?, and 3.36 ? for fluoride, chloride, and bromide, respectively. These results are in excellent agreement with the latest neutron- and x-ray diffraction studies. In addition, our model reproduces several other properties of halide ions in solution, such as diffusion coefficients, description of hydration processes, and exchange reactions. Moreover, it is also able to reproduce the electrostatic properties of the anions in solution (in terms of anion dipole moment) as reported by recent ab initio quantum simulations. All the results show the ability of the proposed model in predicting data, as well as the need of accounting explicitly for the cooperative character of strong hydrogen bonds to reproduce ab initio potential energy surfaces in a mean square sense and to build up a reliable force field.
机译:在这项工作中,我们使用可极化的力场方法,在10 ns尺度上使用经典的分子动力学模拟,研究了卤离子氟,氯和溴化物的水合作用,该方法明确处理了强氢键网络的协同键特征。我们已经对涉及气相中阴离子/水簇的MP2或CCSD(T)级别的从头算数据进行了全面分析,以调整力场参数。特别是,我们考虑了使用大原子基础集(包括附加扩散函数)在气相中计算出的阴离子静态极化率。从溶液中的轨迹中提取的信息显示,结构良好的第一水化壳由6.7、7.0和7.6水分子形成,分别位于约2.78?,3.15?和3.36?。分别用于氟化物,氯化物和溴化物。这些结果与最新的中子和X射线衍射研究非常吻合。此外,我们的模型还再现了溶液中卤离子的其他一些属性,例如扩散系数,水合过程描述和交换反应。此外,它还能够再现溶液中阴离子的静电性质(就阴离子偶极矩而言),如最近的从头算量子模拟所报道的那样。所有结果表明,所提出的模型具有预测数据的能力,并且需要明确说明强氢键的协同特性,以均方根重现从头算势能面并建立可靠的力场。

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