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浓无盐胶体的电动和介电响应:抗衡离子有限尺寸效应的不同处理方法。

Electrokinetic and dielectric response of a concentrated salt-free colloid: Different approaches to counterion finite-size effects.

作者信息

Carrique F, Ruiz-Reina E, Arroyo F J, Jiménez M L, Ahualli S, Delgado A V

机构信息

Departamento de Física Aplicada I Facultad de Ciencias, Universidad de Málaga, 29071 Málaga, Spain.

Departamento de Física Aplicada II Escuela de Ingenierías Industriales Universidad de Málaga, 29071 Málaga, Spain.

出版信息

Phys Rev E. 2022 Jun;105(6-1):064604. doi: 10.1103/PhysRevE.105.064604.

Abstract

In the present work, a general model is developed for the electrokinetics and dielectric response of a concentrated salt-free colloid that takes into account the finite size of the counterions released by the particles to the solution. The effects associated with the counterion finite size have been addressed using a hard-sphere model approach elaborated by Carnahan and Starling [N. F. Carnahan and K. E. Starling, Equation of state for nonattracting rigid spheres, J. Chem. Phys. 51, 635 (1969)0021-960610.1063/1.1672048]. A more simple description of the finite size of the counterions based on that by Bikerman has also been considered for comparison. The studies carried out in this work include predictions on the effect of the finite counterion size on the equilibrium properties of the colloid and its electrokinetic and dielectric response when it is subjected to constant or alternating electric fields. The results show how important the counterion finite-size effects are for most of the electrokinetic and dielectric properties of highly charged and concentrated colloids, mainly for the static and dynamic electrophoretic mobilities. Furthermore, new insights are provided on the counterion condensation effect when counterions are allowed to have finite size. Focus is placed on the changes undergone by their concentration in the condensation layer for low-salt and highly charged colloids.

摘要

在本研究中,针对无盐浓胶体的电动学和介电响应建立了一个通用模型,该模型考虑了颗粒释放到溶液中的抗衡离子的有限尺寸。利用Carnahan和Starling [N. F. Carnahan和K. E. Starling,《非吸引刚性球体的状态方程》,《化学物理杂志》51, 635 (1969)0021 - 960610.1063/1.1672048] 详细阐述的硬球模型方法探讨了与抗衡离子有限尺寸相关的效应。为了进行比较,还考虑了基于Bikerman提出的方法对抗衡离子有限尺寸进行的更简单描述。本研究开展的工作包括预测抗衡离子有限尺寸对胶体平衡性质的影响,以及当胶体受到恒定或交变电场作用时其电动学和介电响应。结果表明,抗衡离子有限尺寸效应对于高电荷浓胶体的大多数电动学和介电性质非常重要,主要体现在静态和动态电泳迁移率方面。此外,当允许抗衡离子具有有限尺寸时,对抗衡离子凝聚效应有了新的认识。重点关注低盐高电荷胶体在凝聚层中抗衡离子浓度的变化。

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