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Trapping particles in microfluidics by positive dielectrophoresis

机译:通过正介电电泳捕获微流体中的颗粒

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Experiments were performed on dilute suspensions of polarized particles in microfluidics with electrodes of different sizes arranged parallel and perpendicular to the flow. Using experiments and simulations, we considered the kinetics of the heterogeneous aggregation of positively polarized particles flowing through a dielectrophoretic micro-device. We identified the conditions under which the interparticle electric interactions do not affect the particle trapping in the high-field strength regions and demonstrated that, under these conditions, the predictions of a single-particle model for the particle accumulation on the electrodes are in a reasonable quantitative agreement with experimental data.
机译:在微流体中对极化粒子的稀悬液进行了实验,其中不同大小的电极平行和垂直于流动方向排列。使用实验和模拟,我们考虑了流过介电泳微器件的正极化粒子的异质聚集的动力学。我们确定了粒子间电相互作用不影响高场强区域中粒子捕获的条件,并证明了在这些条件下,用于粒子在电极上堆积的单粒子模型的预测是合理的与实验数据的定量一致性。

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