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弥散软颗粒的电泳

Electrophoresis of diffuse soft particles.

作者信息

Duval Jérôme F L, Ohshima Hiroyuki

机构信息

Department of Physical Chemistry and Colloid Science, Wageningen Universiteit, Dreijenplein 6, 6703 HB Wageningen, The Netherlands.

出版信息

Langmuir. 2006 Apr 11;22(8):3533-46. doi: 10.1021/la0528293.

Abstract

A theory is presented for the electrophoresis of diffuse soft particles in a steady dc electric field. The particles investigated consist of an uncharged impenetrable core and a charged diffuse polyelectrolytic shell, which is to some extent permeable to ions and solvent molecules. The diffuse character of the shell is defined by a gradual distribution of the density of polymer segments in the interspatial region separating the core from the bulk electrolyte solution. The hydrodynamic impact of the polymer chains on the electrophoretic motion of the particle is accounted for by a distribution of Stokes resistance centers. The numerical treatment of the electrostatics includes the possibility of partial dissociation of the hydrodynamically immobile ionogenic groups distributed throughout the shell as well as specific interaction between those sites with ions from the background electrolyte other than charge-determining ions. Electrophoretic mobilities are computed on the basis of an original numerical scheme allowing rigorous evaluation of the governing transport and electrostatic equations derived following the strategy reported by Ohshima, albeit within the restricted context of a discontinuous chain distribution. Attention is particularly paid to the influence of the type of distribution adopted on the electrophoretic mobility of the particle as a function of its size, charge, degree of permeability, and solution composition. The results are systematically compared with those obtained with a discontinuous representation of the interface. The theory constitutes a basis for interpreting electrophoretic mobilities of heterogeneous systems such as environmental or biological colloids or swollen/deswollen microgel particles.

摘要

本文提出了一种关于在稳定直流电场中扩散软颗粒电泳的理论。所研究的颗粒由一个不带电的不可穿透核心和一个带电的扩散聚电解质壳层组成,该壳层在一定程度上对离子和溶剂分子具有渗透性。壳层的扩散特性由聚合物链段密度在将核心与本体电解质溶液分隔开的空间区域中的逐渐分布来定义。聚合物链对颗粒电泳运动的流体动力学影响通过斯托克斯阻力中心的分布来考虑。静电学的数值处理包括壳层中分布的流体动力学固定离子ogenic基团部分解离的可能性,以及这些位点与背景电解质中除决定电荷离子之外的离子之间的特定相互作用。电泳迁移率是基于一种原始数值方案计算的,该方案允许严格评估按照大岛报道的策略推导的控制传输和静电方程,尽管是在不连续链分布的受限背景下。特别关注所采用的分布类型对颗粒电泳迁移率的影响,该迁移率是颗粒大小、电荷、渗透程度和溶液组成的函数。将结果与通过界面的不连续表示获得的结果进行系统比较。该理论构成了解释非均相体系(如环境或生物胶体或溶胀/去溶胀微凝胶颗粒)电泳迁移率的基础。

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