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A modified Poisson-Boltzmann theory and Monte Carlo simulation study of surface polarization effects in the planar diffuse double layer

机译:改进的Poisson-Boltzmann理论和Monte Carlo模拟研究平面扩散双层中的表面极化效应

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The equilibrium structural properties of an electric double layer in the presence of a dielectric discontinuity at a plane charged interface are studied through a modified Poisson - Boltzmann equation and some Monte Carlo simulations. The diffuse double layer is modelled by a symmetric valency restricted primitive model electrolyte next to a uniformly charged planar wall whose relative permittivity (epsilon(w)) is, in general, different from that of the electrolyte (epsilon(r)) leading to polarization or image forces. The situations when the wall is a conductor (epsilon(w ->)infinity, epsilon(w)not equal epsilon(r)), or when the wall is an insulator (epsilon w = 1, epsilon w not equal epsilon r) are treated and contrasted with the case epsilon w not equal epsilon r, that is, no imaging. The results show that the influence of image forces on the diffuse double layer structure can be substantial, especially at or near zero surface charge density. The theoretical predictions are in nearly quantitative agreement for 1: 1 salts or in semi-quantitative or better agreement for 2: 2 salts with existing Monte Carlo simulations in the literature and some new simulations presented here.
机译:通过改进的泊松-玻尔兹曼方程和一些蒙特卡洛模拟研究了在平面带电界面处存在介电不连续的情况下双电层的平衡结构性质。扩散双层是通过对称价限制的原始模型电解质建模的,该电解质紧挨着均匀带电的平面壁,该壁的相对介电常数(ε(w))通常不同于导致极化的电解质(epsilon(r))。或图像力。当墙是导体时(ε无限大,ε不等于ε),或者墙是绝缘体时(εw = 1,ε不等于ε)。与ε不等于ε,即没有成像的情况进行对比。结果表明,图像力对扩散双层结构的影响可能很大,尤其是在零表面电荷密度或接近零表面电荷密度的情况下。理论预测与文献中现有的蒙特卡罗模拟以及此处介绍的一些新模拟几乎在定量上一致,即对1:1盐或半定量或更好的一致性对2:2盐。

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