首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Salt Effects on Hydrophobic Solvation: Is the Observed Salt Specificity the Result of Excluded Volume Effects or Water Mediated Ion-Hydrophobe Association?
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Salt Effects on Hydrophobic Solvation: Is the Observed Salt Specificity the Result of Excluded Volume Effects or Water Mediated Ion-Hydrophobe Association?

机译:盐效应对疏水性溶剂:是观察到的盐特异性排除的体积效应或水介导的离子疏水性协会的结果吗?

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The solubility of hydrophobic molecules in water is sensitive to salt addition in an ion-specific manner. Such "salting-out" and "salting-in" properties have been shown to be a major contributor to the measured ion-specific Hofmeister effects that are observed in many biophysical phenomena. Various theoretical models have suggested a number of disparate mechanisms for salting-out (salting-in) of hydrophobic moieties, the most popular of which include preferential interaction, water-mediated association, and electrostriction models. However, a complete molecular level description of this ion-specificity is not yet available. This work investigates the ion-specific nature of hydrophobic solvation by studying how sodium and chloride salts affect the thermodynamics of 1,2-hexanediol micellization. The results of this study are analyzed in terms of scaled-particle theory and we show that salt addition can affect hydrophobic solvation in two modalities: salt addition changes the cavitation free energy; salt addition also influences the solvent-solute interaction energy by changing the hydration of the hydrophobic solute. These two effects are salt specific in nature and we suggest that for small hydrophobic solutes these effects are the main cause of salt-specific Hofmeister effects on their solubility.
机译:疏水分子在水中的溶解度对以离子特异性的方式对盐添加敏感。已经显示出这样的“盐酸”和“盐酸溶液”性质是在许多生物物理现象中观察到的测量的离子特异性HofMeister效果的主要贡献者。各种理论模型表明了许多不同的疏水部分盐水(盐渍)的机制,其中最受欢迎的疏水部分,包括优先的相互作用,水介导的关联和电遥测模型。然而,这种离子特异性的完全分子水平描述尚不可用。通过研究钠和氯化物盐如何影响1,2-己二醇胶束的热力学来研究疏水性溶剂的离子特异性。在缩放粒子理论方面分析了该研究的结果,我们表明盐添加可以影响两种方式的疏水性溶剂:盐添加改变空化自由能;盐加法也通过改变疏水性溶质的水合来影响溶剂溶质相互作用能量。这两种效果是本质上的盐,我们表明对于小型疏水性溶质,这些效果是盐特异性HofMeister对其溶解度的主要原因。

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