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DC Electrokinetic Particle Transport in an L-Shaped Microchannel
Journal article   Peer reviewed

DC Electrokinetic Particle Transport in an L-Shaped Microchannel

Ye Ai, Seungkyung Park, Junjie Zhu, Xiangchun Xuan, Ali Beskok and Shizhi Qian
Langmuir, Vol.26(4), pp.2937-2944
16/02/2010
PMID: 19852473

Abstract

Chemistry Chemistry, Multidisciplinary Chemistry, Physical Materials Science Materials Science, Multidisciplinary Physical Sciences Science & Technology Technology
Electrokinetic transport of particles through an L-shaped microchannel under DC electric fields is theoretically and experimentally investigated. The emphasis is placed on the direct current (DC) dielectrophoretic (DEP) effect arising from the interactions between the induced spatially nonuniform electric Field around the corner and the dielectric particles. A transient multiphysics model is developed in all arbitrary Lagrangian-Eulerian (ALE) framework, which comprises the Navier-Stokes equations for the fluid flow and the Laplace equation for the electrical potential. The predictions of the DEP-induced particle trajectory shift in the L-shaped microchannel are in quantitative agreement with the obtained experimental results. Numerical Studies also show that the DEP effect call alter the angular velocity and even the direction of the particle's rotation. Further parametric Studies suggest that the L-shaped microfluidic channel may be utilized to focus and separate particles by size via the induced DEP effect.

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