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首页> 外文期刊>The Journal of Chemical Physics >Dressed ion theory of size-asymmetric electrolytes: Effective ionic charges and the decay length of screened Coulomb potential and pair correlations
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Dressed ion theory of size-asymmetric electrolytes: Effective ionic charges and the decay length of screened Coulomb potential and pair correlations

机译:尺寸不对称电解质的修整离子理论:有效离子电荷和屏蔽库仑电势的衰变长度以及对相关性

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摘要

The effects of ionic size asymmetry on long-range electrostatic interactions in electrolyte solutions are investigated within the primitive model. Using the formalism of dressed ion theory we analyze correlation functions from Monte Carlo simulations and the hypernetted chain approximation for size asymmetric 1:1 electrolytes. We obtain decay lengths of the screened Coulomb potential, effective charges of ions, and effective permittivity of the solution. It is found that the variation of these quantities with the degree of size asymmetry depends in a quite intricate manner on the interplay between the electrostatic coupling and excluded volume effects. In most cases the magnitude of the effective charge of the small ion species is larger than that of the large species; the difference increases with increasing size asymmetry. The effective charges of both species are larger (in absolute value) than the bare ionic charge, except for high asymmetry where the effective charge of the large ions can become smaller than the bare charge.
机译:在原始模型中研究了离子尺寸不对称对电解质溶液中远距离静电相互作用的影响。使用修饰离子理论的形式主义,我们从蒙特卡洛模拟和尺寸不对称1:1电解质的超网链近似分析了相关函数。我们获得了被筛选的库仑电势的衰变长度,离子的有效电荷以及溶液的有效介电常数。发现这些量随尺寸不对称度的变化非常复杂地取决于静电耦合和排除的体积效应之间的相互作用。在大多数情况下,小离子物种的有效电荷量大于大离子物种的有效电荷量。随着尺寸不对称性的增加,差异也随之增加。两种物质的有效电荷都比裸离子电荷大(绝对值),除了高度不对称之外,在这种情况下,大离子的有效电荷会变得比裸电荷小。

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