School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore.
J Chem Phys. 2011 Oct 7;135(13):134502. doi: 10.1063/1.3641825.
The salting effects of 2M sodium chloride electrolyte are studied based on a series of model solutes with properties ranging from hydrophobic to hydrophilic. Generally, hydrophobic solutes will be salted out and hydrophilic solutes will be salted in by NaCl solution. The solvation free energy changes are highly correlated with Kirkwood-Buff integrals. The underlying mechanism resorts to the preferential binding of ions and water to solutes. Our results demonstrate that the salting effect not only depends on the salt's position in Hofmeister series, but also on the solutes' specifics. Taking the hydration free energies of solutes and ions as independent variables, a schematic diagram of salting effects is suggested. The resolved multifaceted salting effects rely on the sensitive balance of the tripartite interaction among solutes, ions, and water.
基于一系列从疏水到亲水性质的模型溶质,研究了 2M 氯化钠电解质的盐效应。一般来说,疏水溶质会被盐析出来,而亲水性溶质会被 NaCl 溶液盐析出来。溶剂化自由能变化与 Kirkwood-Buff 积分高度相关。这种机制归结为离子和水对溶质的优先结合。我们的结果表明,盐效应不仅取决于盐在 Hofmeister 序列中的位置,还取决于溶质的特性。以溶质和离子的水合自由能为自变量,提出了盐效应的示意图。所解析的多方面盐效应依赖于溶质、离子和水之间三方相互作用的敏感平衡。