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在外部施加的直流电场下,通过离子浓度极化作用于处于浓度梯度中的介电粒子上的力。

Force acting on a dielectric particle in a concentration gradient by ionic concentration polarization under an externally applied DC electric field.

作者信息

Kang Kwan Hyoung, Li Dongqing

机构信息

Department of Mechanical and Industrial Engineering, University of Toronto, 5 King's College Road, Toronto, Ontario, M5S 3G8, Canada.

出版信息

J Colloid Interface Sci. 2005 Jun 15;286(2):792-806. doi: 10.1016/j.jcis.2005.01.049.

Abstract

There is a concentration-polarization (CP) force acting on a particle submerged in an electrolyte solution with a concentration (conductivity) gradient under an externally applied DC electric field. This force originates from the two mechanisms: (i) gradient of electrohydrodynamic pressure around the particle developed by the Coulombic force acting on induced free charges by the concentration polarization, and (ii) dielectric force due to nonuniform electric field induced by the conductivity gradient. A perturbation analysis is performed for the electric field, the concentration field, and the hydrodynamic field, under the assumptions of creeping flow and small concentration gradient. The leading order component of this force acting on a dielectric spherical particle is obtained by integrating the Maxwell and the hydrodynamic stress tensors. The analytical results are validated by comparing the surface pressure and the skin friction to those of a numerical analysis. The CP force is proportional to square of the applied electric field, effective for electrically neutral particles, and always directs towards the region of higher ionic concentration. The magnitude of the CP force is compared to that of the electrophoretic and the conventional dielectrophoretic forces.

摘要

在外部施加的直流电场作用下,浸没在具有浓度(电导率)梯度的电解质溶液中的粒子会受到浓度极化(CP)力的作用。该力源于两种机制:(i)浓度极化作用于感应自由电荷的库仑力在粒子周围产生的电流体动力学压力梯度,以及(ii)电导率梯度引起的非均匀电场导致的介电力。在蠕动流和小浓度梯度的假设下,对电场、浓度场和流体动力学场进行了微扰分析。通过对麦克斯韦张量和流体动力学应力张量进行积分,得到了作用在介电球形粒子上该力的主导阶分量。通过将表面压力和表面摩擦力与数值分析结果进行比较,验证了分析结果。CP力与外加电场的平方成正比,对电中性粒子有效,并且总是指向离子浓度较高的区域。将CP力的大小与电泳力和传统介电泳力的大小进行了比较。

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