Ionic mobility driven by correlated van der Waals and electrostatic forces.

T. Samanta, D. Matyushov
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引用次数: 0

Abstract

Classical theories of dielectric friction make two critical assumptions: (i) friction due to van der Waals (vdW) forces is described by hydrodynamic drag and is independent of the ionic charge and (ii) vdW and electrostatic forces are statistically independent. Both assumptions turn out to be incorrect when tested against simulations of anions and cations with varying charge magnitude dissolved in water. Both the vdW and electrostatic components of the force variance scale linearly with the ionic charge squared. The two components are strongly anticorrelated producing simple relations for the total force variance in terms of self-variances. The inverse diffusion constant scales linearly with the charge squared. Solvation asymmetry between cations and anions extends to linear transport coefficients.
由相关范德华力和静电力驱动的离子迁移率。
电介质摩擦的经典理论有两个关键假设:(i)由范德华力引起的摩擦由流体动力阻力描述,与离子电荷无关;(ii)范德华力和静电力在统计上是独立的。当对不同电荷大小的阴离子和阳离子溶解在水中的模拟进行测试时,这两个假设都被证明是不正确的。力的vdW和静电分量随离子电荷的平方呈线性变化。这两个分量是强反相关的,在自方差方面产生了简单的总力方差关系。逆扩散常数与电荷的平方成线性关系。阳离子和阴离子之间的溶剂化不对称扩展到线性输运系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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