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Toward the understanding of hydration phenomena in aqueous electrolytes from the interplay of theory, molecular simulation, and experiment

机译:从理论,分子模拟和实验的相互作用来理解电解质水溶液中的水合现象

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摘要

We study the microstructural analysis of aqueous electrolytes and present a detailed account of the fundamentals underlying the neutron scattering with isotopic substitution (NDIS) approach for the experimental determination of ion coordination numbers in systems involving both halide anions and oxyanions. We place particular emphasis on the frequently overlooked ion-pairing phenomenon, identify its microstructural signature in the neutron-weighted distribution functions, and suggest novel techniques to deal with either the estimation of the ion-pairing magnitude or the correction of its effects on the experimentally measured coordination numbers. We illustrate the underlying ideas by applying these new developments to the interpretation of four NDIS test-cases via molecular simulation, as convenient dry runs for the actual scattering experiments, for representative aqueous electrolyte solutions at ambient conditions involving metal halides and nitrates. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们研究了水性电解质的微观结构分析,并详细介绍了用同位素取代(NDIS)方法进行中子散射的基本原理,该方法用于实验测定涉及卤化物阴离子和氧阴离子的系统中的离子配位数。我们特别强调经常被忽视的离子对现象,在中子加权分布函数中识别其微结构特征,并提出新颖的技术来处理离子对幅度的估计或校正其对实验的影响测量的协调数。我们通过分子模拟将这些新进展应用到四个NDIS测试用例的解释中,以此说明了基本思想,这对于实际的散射实验来说是方便的试运行,对于在环境条件下包括金属卤化物和硝酸盐的代表性电解质水溶液。 (C)2015 Elsevier B.V.保留所有权利。

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