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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Scaling law analysis of electrohydrodynamics and dielectrophoresis for isomotive dielectrophoresis microfluidic devices
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Scaling law analysis of electrohydrodynamics and dielectrophoresis for isomotive dielectrophoresis microfluidic devices

机译:电流动力学和介电电泳对等异电泳微流体装置的缩放法分析

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Abstract Isomotive dielectrophoresis (isoDEP) is a unique DEP geometrical configuration where the gradient of the field‐squared ( ? E rms 2 ) is constant. IsoDEP analyzes polarizable particles based on their magnitude and direction of translation. Particle translation is a function of the polarizability of both the particles and suspending medium, the particles’ size and shape, and the frequency of the electric field. However, other electrokinetics act on the particles simultaneously, including electrothermal hydrodynamics. Hence, to maximize the DEP force relative to over electrokinetic forces, design parameters such as microchannel geometry, fabrication materials, and applied electric field must be properly tuned. In this work, scaling law analyses were developed to derive design rules, relative to particle diameter, to reduce unwanted electrothermal hydrodynamics relative to DEP‐induced particle translation. For a particle suspended in 10 mS/m media, if the channel width and height are below ten particle diameters, the electrothermal‐driven flow is reduced by ~500 times compared to a channel that is 250 particles diameters in width and height. Replacing glass with silicon as the device's underlying substrate for an insulative‐based isoDEP reduces the electrothermal induced flow approximately 20 times less.
机译:抽象Isomotive介电泳(isoDEP)是一种独特的DEP几何构型,其中所述场的平方的梯度(ΔE有效值2)是恒定的。 IsoDEP分析了基于其规模和翻译的方向极化粒子。粒子翻译是颗粒既和悬浮介质,所述粒子的尺寸和形状,并且电场的频率的极化的函数。然而,其他的电动力学同时作用在颗粒上,包括电热流体力学。因此,相对于在电动力,设计参数,如微通道的几何形状,制造材料的DEP力最大化,并施加电场必须适当调整。在这项工作中,标度律分析开发,以派生设计规则,相对于粒径,以减少相对于DEP引起的微粒翻译不必要的电热流体力学。为悬浮在10毫秒的颗粒/米媒体,如果信道宽度和高度都低于10粒径,电热驱动的流动是通过比较一个信道即250米颗粒的直径在宽度和高度〜500倍降低。用硅作为该设备的一个基于绝缘性isoDEP下层基板更换玻璃降低了电热引起的流动少约20倍。

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