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二价金属硫酸盐水溶液中的离子配对与溶剂壳层极化

Ion Pairing and Solvent Shell Polarization in Aqueous Solutions of Divalent Metal Sulfates.

作者信息

Bialik Erik, Abbas Zareen

机构信息

Department of Chemistry, University of GothenburgGothenburg SE-413 90, Sweden.

出版信息

J Phys Chem B. 2025 Aug 21;129(33):8541-8547. doi: 10.1021/acs.jpcb.5c03061. Epub 2025 Aug 5.

Abstract

The interactions of divalent metal cations with other species in aqueous solution are important in contexts such as the basic functioning of living cells. Recent evidence suggests that contact ion pairs are virtually absent in magnesium sulfate solutions and that solvent-shared ion pairs predominate. It is still unclear whether this is the case for divalent metal salts, in general. The polarization energy of the water molecules of the first solvation shell of divalent metal cations is known to be essential to correctly calculating the ionic solvation energy. Here, we show that the same type of solvent shell polarization is important for ion pairing in metal sulfate model electrolytes. The polarization energy of the solvating water molecules makes them harder to replace with ions compared to nonpolarizable models and therefore suppresses ion contact. As this polarization energy increases strongly with the electric field strength at the position of solvating water molecules, which, in turn, depends on cation size, this introduces an ion size dependence. With a polarizable water model, contact ion pairing is completely suppressed for cations below a certain minimum size. No corresponding tendency is seen with a nonpolarizable water model, for which direct contacts between cations and anions are prevalent for all cation sizes considered. This observation may explain the previously noted tendency of extremely small ions in certain respects to behave as large ions. While this effect has previously been ascribed to a strongly bound solvation shell around small ions, the current results provide a mechanism for why small ions are strongly solvated.

摘要

二价金属阳离子与水溶液中其他物种的相互作用在诸如活细胞基本功能等背景下非常重要。最近的证据表明,硫酸镁溶液中几乎不存在接触离子对,且溶剂共享离子对占主导。一般来说,对于二价金属盐是否如此仍不清楚。已知二价金属阳离子第一溶剂化层水分子的极化能对于正确计算离子溶剂化能至关重要。在此,我们表明相同类型的溶剂壳极化对于金属硫酸盐模型电解质中的离子配对很重要。与不可极化模型相比,溶剂化水分子的极化能使它们更难被离子取代,因此抑制了离子接触。由于这种极化能随着溶剂化水分子位置处的电场强度强烈增加,而电场强度又取决于阳离子大小,这就引入了离子大小依赖性。使用可极化水模型时,对于低于某个最小尺寸的阳离子,接触离子配对被完全抑制。对于不可极化水模型则没有观察到相应趋势,对于该模型,在所考虑的所有阳离子尺寸下,阳离子与阴离子之间的直接接触都很普遍。这一观察结果可能解释了先前在某些方面注意到的极小离子表现得像大离子的趋势。虽然这种效应先前被归因于小离子周围紧密结合的溶剂化层,但目前的结果提供了一个关于小离子为何被强烈溶剂化的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cab1/12376091/445c0d0cd8b8/jp5c03061_0001.jpg

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