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静电相关性对电动现象的影响。

Effects of electrostatic correlations on electrokinetic phenomena.

作者信息

Storey Brian D, Bazant Martin Z

机构信息

Franklin W. Olin College of Engineering, Needham, Massachusetts 02492, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Nov;86(5 Pt 2):056303. doi: 10.1103/PhysRevE.86.056303. Epub 2012 Nov 6.

Abstract

The classical theory of electrokinetic phenomena is based on the mean-field approximation that the electric field acting on an individual ion is self-consistently determined by the local mean charge density. This paper considers situations, such as concentrated electrolytes, multivalent electrolytes, or solvent-free ionic liquids, where the mean-field approximation breaks down. A fourth-order modified Poisson equation is developed that captures the essential features in a simple continuum framework. The model is derived as a gradient approximation for nonlocal electrostatics of interacting effective charges, where the permittivity becomes a differential operator, scaled by a correlation length. The theory is able to capture subtle aspects of molecular simulations and allows for simple calculations of electrokinetic flows in correlated ionic fluids. Charge-density oscillations tend to reduce electro-osmotic flow and streaming current, and overscreening of surface charge can lead to flow reversal. These effects also help to explain the suppression of induced-charge electrokinetic phenomena at high salt concentrations.

摘要

经典的电动现象理论基于平均场近似,即作用于单个离子的电场由局部平均电荷密度自洽地确定。本文考虑了平均场近似失效的情况,如浓电解质、多价电解质或无溶剂离子液体。推导了一个四阶修正泊松方程,该方程在一个简单的连续介质框架中捕捉了基本特征。该模型是作为相互作用有效电荷的非局部静电学的梯度近似推导出来的,其中介电常数成为一个微分算子,并由一个相关长度进行缩放。该理论能够捕捉分子模拟的细微方面,并允许对相关离子流体中的电动流进行简单计算。电荷密度振荡倾向于降低电渗流和流动电流,表面电荷的过屏蔽会导致流动反转。这些效应也有助于解释高盐浓度下感应电荷电动现象的抑制。

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