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L 形微通道中的直流电动粒子输运。

DC electrokinetic particle transport in an L-shaped microchannel.

机构信息

Department of Aerospace Engineering, Old Dominion University, Norfolk, Virginia 23529, USA.

出版信息

Langmuir. 2010 Feb 16;26(4):2937-44. doi: 10.1021/la902711x.

Abstract

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 an 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 can 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.

摘要

直流电场下通过 L 形微通道的颗粒的电动输运进行了理论和实验研究。重点是由于拐角处感应的空间非均匀电场与介电颗粒之间的相互作用而产生的直流介电泳(DEP)效应。在任意拉格朗日-欧拉(ALE)框架中开发了瞬态多物理模型,该模型包括用于流场的纳维-斯托克斯方程和用于电势的拉普拉斯方程。在 L 形微通道中 DEP 诱导的颗粒轨迹偏移的预测与获得的实验结果定量一致。数值研究还表明,DEP 效应可以改变颗粒的角速度,甚至改变颗粒的旋转方向。进一步的参数研究表明,L 形微流控通道可以通过感应的 DEP 效应来聚焦和按尺寸分离颗粒。

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