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斯特恩层结构性质对高电荷球形大离子电泳迁移的影响。

Effects of structural properties of the Stern layer on the electrophoretic migration of a highly charged spherical macroion.

作者信息

Rezaei Majid, Azimian Ahmad Reza

机构信息

Department of Mechanical Engineering, Isfahan University of technology, Isfahan, Iran.

出版信息

Electrophoresis. 2015 Dec;36(24):2985-93. doi: 10.1002/elps.201500320.

Abstract

The electrophoretic migration of a highly charged spherical macroion suspended in an aqueous solution of NaCl is studied using the molecular dynamic method. The objective is to examine the effects of the colloidal surface charge density on the electrophoretic mobility (μ) of the spherical macroion. The bare charge and the size of the macroion are varied separately to induce changes in the colloidal surface charge density. Our results indicate that μ depends on colloidal surface charge density in a nonmonotonic manner, but that this relationship is independent of the way the surface charge density is varied. It is found that an increase in colloidal surface charge density may lead to the formation of new sublayers in the Stern layer. The μ profile is also found to have a local maximum for a bare charge at which a new sublayer is formed in the Stern layer, and a local minimum for a bare charge at which the outer sublayer becomes relatively dense. Finally, the electrophoretic flow caused by the migration of the spherical macroion is studied to find that one decisive factor causing the electrophoretic flow is the ability of the macroion to carry anions in the electrolyte solution.

摘要

采用分子动力学方法研究了悬浮在NaCl水溶液中的高电荷球形大离子的电泳迁移。目的是研究胶体表面电荷密度对球形大离子电泳迁移率(μ)的影响。分别改变大离子的裸电荷和尺寸,以引起胶体表面电荷密度的变化。我们的结果表明,μ以非单调方式依赖于胶体表面电荷密度,但这种关系与表面电荷密度变化的方式无关。发现胶体表面电荷密度的增加可能导致斯特恩层中形成新的子层。还发现,对于在斯特恩层中形成新子层的裸电荷,μ曲线有一个局部最大值;对于外层子层变得相对致密的裸电荷,μ曲线有一个局部最小值。最后,研究了由球形大离子迁移引起的电泳流,发现导致电泳流的一个决定性因素是大离子在电解质溶液中携带阴离子的能力。

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