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具有不同离子扩散速度的球形颗粒浓悬浮液的扩散泳

Diffusiophoresis of concentrated suspensions of spherical particles with distinct ionic diffusion velocities.

作者信息

Hsu Jyh-Ping, Lou James, He Yan-Ying, Lee Eric

机构信息

Department of Chemical Engineering, National Taiwan University, Taipei, Taiwan.

出版信息

J Phys Chem B. 2007 Mar 15;111(10):2533-9. doi: 10.1021/jp0659305. Epub 2007 Feb 22.

Abstract

The diffusiophoresis of a concentrated spherical dispersion of colloidal particles subject to a small electrolyte gradient is analyzed theoretically for an arbitrary zeta potential and double layer thickness. In particular, the influence of the difference in the diffusivities of cations and anions is discussed. A unit cell model is used to simulate a spherical dispersion, and a pseudospectral method is adopted to solve the equations governing the phenomenon under consideration. We show that, as in the case of an infinitely dilute dispersion, when the diffusivities of cations and anions are different, the diffusiophoretic mobility is no longer an even function of the zeta potential or double layer thickness. In contrast to the case of identical diffusivity of cations and anions, a local electric field is induced in the present case due to an unbalanced charge distribution between higher and lower concentration regions. Depending upon the direction of this induced electric field, the diffusiophoretic mobility can be larger or smaller than that for the case of identical diffusivity. The diffusiophoretic mobility is influenced mainly by the induced electric field arising from the difference in the ionic diffusivities, the concentration gradient, and the effect of double layer polarization.

摘要

对于任意的zeta电位和双层厚度,从理论上分析了受到小电解质梯度作用的胶体颗粒浓球型分散体的扩散泳现象。特别讨论了阳离子和阴离子扩散率差异的影响。采用单胞模型模拟球形分散体,并采用伪谱方法求解控制该现象的方程。我们表明,与无限稀分散体的情况一样,当阳离子和阴离子的扩散率不同时,扩散泳迁移率不再是zeta电位或双层厚度的偶函数。与阳离子和阴离子扩散率相同的情况相反,在当前情况下,由于高浓度区和低浓度区之间电荷分布不平衡而产生局部电场。根据该感应电场的方向,扩散泳迁移率可能大于或小于扩散率相同情况下的迁移率。扩散泳迁移率主要受离子扩散率差异、浓度梯度和双层极化效应所产生的感应电场的影响。

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