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首页> 外文期刊>Journal of Molecular Liquids >Molecular dynamics simulations of K+ -Cl- ion pair in polar mixtures of acetone and water: Preferential solvation and structural studies
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Molecular dynamics simulations of K+ -Cl- ion pair in polar mixtures of acetone and water: Preferential solvation and structural studies

机译:丙酮和水的极性混合物中K + -Cl-离子对的分子动力学模拟:优先溶剂化和结构研究

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摘要

Molecular dynamics simulation studies have been performed for a series of polar mixtures of acetone and water containing a K+ -Cl- ion pair. We have obtained the potentials of mean force (PMFs) for 15 mixtures spanning the whole composition range from 0% to 100% acetone. The PMFs indicate the presence of a stable contact ion pair (CIP), a solvent assisted ion pair (SAIP) and a solvent separated ion pair (SSIP) in all the compositions with acetone mole fraction (X-acetone) <= 0.50. However, for X-acetone > 0.50 and X-acetone <= 0.90, PMFs suggest the presence of only a stable CIP and SAIP. For. X-acetone > 0.90, PMFs show the existence of only a stable CIP. While the stability of CIPs in mixtures increases with xamtone, the reverse trend is observed for SAIPs. The determination of thermodynamic properties suggests that entropy favours the CIPs and SAIPs in all the mixtures. The analysis of radial distribution functions using Kirkwood-Buff (KB) integrals explains the preferential solvation of the ion pair. We observed that in all the mixtures, K+ -Cl- ion pair is preferentially solvated by water. Running coordination numbers of solvent molecules around the ion pair and preferential binding parameters also support the above observations. The dynamical aspects have been explored by calculating self -diffusion constants and hydrogen bond dynamics. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经对含有K + -Cl-离子对的丙酮和水的一系列极性混合物进行了分子动力学模拟研究。我们获得了从0%到100%丙酮的整个成分范围内的15种混合物的平均力(PMF)的潜力。 PMF表示在丙酮摩尔分数(X-丙酮)<= 0.50的所有组合物中均存在稳定的接触离子对(CIP),溶剂辅助离子对(SAIP)和溶剂分离离子对(SSIP)。但是,对于X-丙酮> 0.50和X-丙酮<= 0.90,PMF建议仅存在稳定的CIP和SAIP。对于。 X-丙酮> 0.90,PMF显示仅存在稳定的CIP。尽管混合物中CIP的稳定性随内酰胺而增加,但SAIP却观察到相反的趋势。热力学性质的确定表明,熵有利于所有混合物中的CIP和SAIP。使用Kirkwood-Buff(KB)积分的径向分布函数分析说明了离子对的优先溶剂化。我们观察到在所有混合物中,K + -Cl-离子对优先被水溶剂化。离子对周围的溶剂分子的连续配位数和优先结合参数也支持上述观察。通过计算自扩散常数和氢键动力学来研究动力学方面。 (C)2015 Elsevier B.V.保留所有权利。

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