Electro-osmotic properties of porous permeable films

Elena F. Silkina, Naren Bag, O. Vinogradova
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引用次数: 6

Abstract

Permeable porous coatings on a flat solid support significantly impact its electrostatic and electrokinetic properties. Existing work has focused on simplified cases, such as weakly charged and/or thick porous films, with limited theoretical guidance. Here, we consider the general case of coatings of any given volume charge density and obtain analytic formulas for electrostatic potential profiles, valid for any film thickness and salt concentration. They allow us to calculate analytically the difference between potentials at solid support and at interface with an outer electrolyte, that is the key parameter ascertaining the functionality of permeable coatings. Our analysis provides a framework for interpreting and predicting specific for porous films super-properties, from an enhanced ion absorption to a giant amplification of electro-osmotic flows. The results are relevant for hydrogel and zeolite coatings, porous carbon and ion-exchange resins, polyelectrolyte brushes, and more.
多孔渗透膜的电渗透特性
平面固体载体上的多孔渗透涂层对其静电和电动性能有显著影响。现有的工作主要集中在简化的情况下,如弱电荷和/或厚多孔膜,理论指导有限。在这里,我们考虑了任何给定体积电荷密度的涂层的一般情况,并得到了静电势分布的解析公式,适用于任何薄膜厚度和盐浓度。它们使我们能够解析地计算固体支撑和与外部电解质界面的电位之差,这是确定渗透涂层功能的关键参数。我们的分析为解释和预测特定的多孔膜的超级特性提供了一个框架,从增强的离子吸收到电渗透流的巨大放大。研究结果适用于水凝胶和沸石涂层、多孔碳和离子交换树脂、聚电解质刷等。
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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