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首页> 外文期刊>Physical review letters >Induced-Charge Electrokinetic Phenomena: Theory and Microfluidic Applications
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Induced-Charge Electrokinetic Phenomena: Theory and Microfluidic Applications

机译:感应电荷电动现象:理论和微流控应用。

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We give a general, physical description of "induced-charge electro-osmosis" (1CEO), the nonlinear electrokinetic slip at a polarizable surface, in the context of some new techniques for microfluidic pumping and mixing. ICEO generalizes "ac electro-osmosis" at microelectrode arrays to various dielectric and conducting structures in weak dc or ac electric fields. The basic effect produces micro-vortices to enhance mixing in microfluidic devices, while various broken symmetries―controlled potential, irregular shape, nonuniform surface properties, and field gradients―can be exploited to produce streaming flows. Although we emphasize the qualitative picture of ICEO, we also briefly describe the mathematical theory (for thin double layers and weak fields) and apply it to a metal cylinder with a dielectric coating in a suddenly applied dc field.
机译:在一些微流体泵送和混合新技术的背景下,我们对“感应电荷电渗”(1CEO)(可极化表面的非线性电动滑移)进行了一般的物理描述。 ICEO将微电极阵列上的“交流电渗透”推广到弱直流或交流电场中的各种介电和导电结构。基本作用产生微涡流,以增强微流控设备中的混合,同时可以利用各种破碎的对称性(可控势,不规则形状,不均匀的表面特性和场梯度)来产生流动流。尽管我们强调了ICEO的定性图,但我们也简要地描述了数学理论(用于薄的双层和弱磁场),并将其应用于突然施加的dc场中具有介电涂层的金属圆柱体。

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