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Size-selective deposition of particles combining liquid and particulate dielectrophoresis

机译:液体和颗粒介电电泳结合的颗粒的尺寸选择沉积

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摘要

Rapid, size-based, deposition of particles from liquid suspension has been demonstrated using the nonuniform electric field created by coplanar microelectrode strips patterned on an insulating substrate. The scheme uses the dielectrophoretic force both to distribute aqueous liquid containing particles and, simultaneously, to separate the particles. Tests conducted with solutions containing equal volume fractions of 0.53 and 0.93 μm polystyrene beads, tagged with different fluorescent dyes, reveal size-based separation within nanoliter droplets formed along the structure after voltage removal. The relative volume ratio of the two sizes varies smoothly from 1:1 to ~3:1 (favoring the smaller particles) along the electrodes. Using the Clausius-Mossotti factor K as the only adjustable parameter, the experimental data correlate to a numerical simulation of the process at Re[K] ≈ 0.5, a value consistent with expectation for polystyrene beads at ~100 kHz in aqueous suspension.
机译:使用由在绝缘基板上构图的共面微电极条产生的非均匀电场,已经证明了从悬浮液中快速,基于尺寸的颗粒沉积。该方案利用介电泳力既分布含颗粒的水性液体,又同时分离颗粒。使用含有等体积分数的0.53和0.93μm聚苯乙烯珠的溶液(用不同的荧光染料标记)进行的测试显示,电压去除后,沿结构形成的纳升微滴内基于尺寸的分离。两种尺寸的相对体积比沿电极从1:1到〜3:1平滑变化(有利于较小的颗粒)。使用克劳修斯-莫索蒂系数K作为唯一的可调参数,实验数据与Re [K]≈0.5时的过程数值模拟相关,该值与水性悬浮液中〜100 kHz时聚苯乙烯珠的期望值一致。

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