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软颗粒浓悬浮液的交流电动学

AC electrokinetics of concentrated suspensions of soft particles.

作者信息

Ahualli Silvia, Jiménez M Luisa, Carrique Félix, Delgado Angel V

机构信息

Department of Applied Physics, School of Science, University of Granada, Granada, Spain.

出版信息

Langmuir. 2009 Feb 17;25(4):1986-97. doi: 10.1021/la803171f.

Abstract

In this work, we show how the cell model traditionally used for the evaluation of the electrokinetic properties of concentrated suspensions can be modified to include the case of soft particles, that is, particles consisting of a rigid core and a polyelectrolyte membrane. The Navier-Stokes and Poisson's equations have been modified to account for the presence of extra friction and a volume-distributed charge in the membrane. In addition to the boundary conditions on the particle and the cell boundary, it is necessary to define conditions on the polymer-electrolyte solution interface. The frequency dependence of the dynamic mobility and electric permittivity of suspensions of soft particles with arbitrary solids concentration is computed. It is shown that the dynamic mobility of these systems is larger than that corresponding to hard particles with the same charge. For the permittivity, the same trends are observed: the R-relaxation amplitude increases upon coating. It is found that friction plays an important role in determining the mobility, while the permittivity is more affected by the concentration of solids. The model also predicts that the charges on the core and in the membrane are very important parameters, although their effects differ on the mobility and the permittivity. While the former depends mainly on the membrane charge, the latter is responsive to both charges at comparable extents.

摘要

在这项工作中,我们展示了如何对传统上用于评估浓悬浮液电动性质的细胞模型进行修改,以纳入软颗粒的情况,即由刚性核心和聚电解质膜组成的颗粒。对纳维-斯托克斯方程和泊松方程进行了修改,以考虑膜中额外摩擦力和体积分布电荷的存在。除了颗粒和细胞边界上的边界条件外,还需要定义聚合物电解质溶液界面上的条件。计算了具有任意固体浓度的软颗粒悬浮液的动态迁移率和介电常数的频率依赖性。结果表明,这些系统的动态迁移率大于具有相同电荷的硬颗粒的动态迁移率。对于介电常数,也观察到相同的趋势:涂层后R弛豫幅度增加。发现摩擦力在确定迁移率方面起着重要作用,而介电常数受固体浓度的影响更大。该模型还预测,核心和膜上的电荷是非常重要的参数,尽管它们对迁移率和介电常数的影响不同。前者主要取决于膜电荷,而后者在相当程度上对两种电荷都有响应。

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