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关于霍夫迈斯特阳离子与苯在水中溶解度的分子模拟研究

Molecular simulation study on Hofmeister cations and the aqueous solubility of benzene.

作者信息

Ganguly Pritam, Hajari Timir, van der Vegt Nico F A

机构信息

Center of Smart Interfaces, Technische Universität Darmstadt , Alarich-Weiss-Straße 10, 64287 Darmstadt, Germany.

出版信息

J Phys Chem B. 2014 May 22;118(20):5331-9. doi: 10.1021/jp5011154. Epub 2014 May 13.

Abstract

We study the ion-specific salting-out process of benzene in aqueous alkali chloride solutions using Kirkwood-Buff (KB) theory of solutions and molecular dynamics simulations with different empirical force field models for the ions and benzene. Despite inaccuracies in the force fields, the simulations indicate that the decrease of the Setchenow salting-out coefficient for the series NaCl > KCl > RbCl > CsCl is determined by direct benzene-cation correlations, with the larger cations showing weak interactions with benzene. Although ion-specific aqueous solubilities of benzene may be affected by indirect ion-ion, ion-water, and water-water correlations, too, these correlations are found to be unimportant, with little to no effect on the Setchenow salting-out coefficients of the various salts. We further considered LiCl, which is experimentally known to be a weaker salting-out agent than NaCl and KCl and, therefore, ranks at an unusual position within the Hofmeister cation series. The simulations indicate that hydrated Li(+) ions can take part of the benzene hydration shell while the other cations are repelled by it. This causes weaker Li(+) exclusion around the solute and a resulting, weaker salting-out propensity of LiCl compared to that of the other salts. Removing benzene-water and benzene-salt electrostatic interactions in the simulations does not affect this mechanism, which may therefore also explain the smaller effect of LiCl, as compared to that of NaCl or KCl, on aqueous solvation and hydrophobic interaction of nonpolar molecules.

摘要

我们使用溶液的柯克伍德-布夫(KB)理论以及针对离子和苯的不同经验力场模型的分子动力学模拟,研究了苯在碱金属氯化物水溶液中的离子特异性盐析过程。尽管力场存在不准确之处,但模拟结果表明,对于NaCl>KCl>RbCl>CsCl系列,Setchenow盐析系数的降低是由苯与阳离子的直接相关性决定的,较大的阳离子与苯的相互作用较弱。尽管苯的离子特异性水溶性也可能受到间接的离子-离子、离子-水和水-水相关性的影响,但发现这些相关性并不重要,对各种盐的Setchenow盐析系数几乎没有影响。我们进一步考虑了LiCl,实验表明它是一种比NaCl和KCl弱的盐析剂,因此在霍夫迈斯特阳离子系列中处于不寻常的位置。模拟结果表明,水合Li(+)离子可以占据部分苯的水合壳层,而其他阳离子则被其排斥。这导致溶质周围Li(+)的排斥作用较弱,与其他盐相比,LiCl的盐析倾向也较弱。在模拟中去除苯-水和苯-盐的静电相互作用不会影响这一机制,因此这也可以解释与NaCl或KCl相比,LiCl对非极性分子的水合作用和疏水相互作用的影响较小的原因。

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