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Molecular simulations of concentrated aqueous solutions: Ionic equilibrium structures in solutions

机译:浓水溶液的分子模拟:溶液中的离子平衡结构

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The computer simulation methods have been applied to study the structure of aqueous solutions of simple ionic salts in the region of very high concentrations. The calculations of ionic structures in solutions were performed for NaOH, NaCl, LiCl and MgCl_2 solutions. The concentrations ranged from 0.2 M to saturated solutions, in some cases as much as 19 M. A particularly careful analysis was devoted to the topology of the ionic structures in solution. Up to now. most of the research on ionic solutions was devoted to studies of the ionic hydration shells. However, beyond the Debye - Huckel range of very low concentrations, very little is known about the interionic spatial correlations. Certain theories predict the existence of ionic quasi-lattices in the region of high concentrations. In the present work we used the Molecular Dynamics method combined with such statistical tools as the radial distribution functions. Voronoi tessellations, the running and O'Keeffe coordination numbers, etc., in order to analyze the ionic structures. The radial distribution functions of three types: the cation - anion. cation - cation and the anion - anion type were calculated for each solution. The functions are typical for the quasi-crystalline order within the first 2-3 ionic coordination layers around a selected ion. The order is particularly pronounced for the anion - cation RDF's. The distributions of the sphericity factor of the Voronoi polyhedra were calculated for the ionic substructures in the configurations produced by the Molecular Dynamics simulation. The increase of the ion concentration causes evolution of these distributions towards increased signatures of predominant geometries of the Voronoi polyhedra. This, together with the results for RDF's, provides a strong conjecture for existence of the ordered structures of ions in concentrated solutions.
机译:计算机模拟方法已被用于研究高浓度区域中简单离子盐水溶液的结构。对NaOH,NaCl,LiCl和MgCl_2溶液进行了溶液中离子结构的计算。浓度范围从0.2 M到饱和溶液,在某些情况下高达19M。对溶液中离子结构的拓扑进行了特别仔细的分析。到现在。离子溶液的大部分研究致力于离子水合壳的研究。然而,除了极低浓度的德拜-哈克尔范围之外,人们对离子间空间相关性的了解还很少。某些理论预测高浓度区域中离子准晶格的存在。在当前的工作中,我们使用了分子动力学方法,并结合了诸如径向分布函数之类的统计工具。 Voronoi镶嵌,运行和O'Keeffe配位数等,以分析离子结构。径向分布函数有三种类型:阳离子-阴离子。计算每种溶液的阳离子-阳离子和阴离子-阴离子的类型。对于所选离子周围的前2-3个离子配位层内的准晶体顺序,该功能是典型的。对于阴离子-阳离子RDF,该顺序特别明显。通过分子动力学模拟生成的构型中的离子亚结构计算了Voronoi多面体的球形度分布。离子浓度的增加导致这些分布向着Voronoi多面体的主要几何形状增加的特征发展。这与RDF的结果一起,为浓缩溶液中离子有序结构的存在提供了一个强有力的推测。

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