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A 2D model of different electrode shapes for traveling wave dielectrophoresis

机译:行波介电泳的不同电极形状的二维模型

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The movement of uncharged polarizable particles towards the location of extreme field strength in a non-uniform electric field is known as Dielectrophoresis phenomena. A traveling wave dielectrophoresis (twDEP) is an effective technique for particle manipulation and separation of biological particles. The twDEP is an electro-kinetic method resultant of the interaction between a non-uniform electric field and polarizable particles. The proposed twDEP is used to manipulate microbeads. The model of twDEP platform and polarizable particles (microbeads) in addition to the twDEP force which is a resultant of the interaction of a non-uniform electric field and polarizable particles were simulated using COMSOL Multiphysics ®. In this work, a 2D model of different shapes of traveling wave microelectrodes array based on printed circuit board (PCB) technology is presented and discussed to reach the efficient design of twDEP microelectrodes.
机译:在不均匀电场中,不带电的可极化颗粒向极端场强位置的运动被称为介电泳现象。行波介电电泳(twDEP)是一种用于粒子操纵和生物粒子分离的有效技术。 twDEP是一种电动方法,是不均匀电场与可极化粒子之间相互作用的结果。拟议的twDEP用于操纵微珠。使用COMSOL Multiphysics®模拟了twDEP平台和可极化粒子(微珠)的模型,以及由非均匀电场和可极化粒子相互作用产生的twDEP力。在这项工作中,提出并讨论了基于印刷电路板(PCB)技术的不同形状的行波微电极阵列的二维模型,以实现twDEP微电极的高效设计。

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