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Dielectrophoresis Response of Water-in-Oil-in-Water Double Emulsion Droplets with Singular or Dual Cores

机译:用奇异或双芯的水包油水滴双乳液液滴的介电泳响应

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摘要

Microfluidic technologies have enabled generation of exquisite multiple emulsion droplets, which have been used in many fields, including single-cell assays, micro-sized chemical reactions, and material syntheses. Electrical controlling is an important technique for droplet manipulation in microfluidic systems, but the dielectrophoretic behaviors of multiple emulsion droplets in electrical fields are rarely studied. Here, we report on the dielectrophoresis response of double emulsion droplets in AC electric fields in microfluidic channel. A core-shell model is utilized for analyzing the polarization of droplet interfaces and the overall dielectrophoresis (DEP) force. The water-in-oil-in-water droplets, generated by glass capillary devices, experience negative DEP at low field frequency. At high frequency, however, the polarity of DEP is tunable by adjusting droplet shell thickness or core conductivity. Then, the behavior of droplets with two inner cores is investigated, where the droplets undergo rotation before being repelled or attracted by the strong field area. This work should benefit a wide range of applications that require manipulation of double emulsion droplets by electric fields.
机译:微流体技术使得能够产生精致的多乳液液滴,这些液体已经用于许多领域,包括单细胞测定,微尺寸的化学反应和材料合成。电气控制是微流体系统中液滴操作的重要技术,但很少研究电场中多重乳液液滴的介电电泳行为。在此,我们报告了微流体通道中AC电场中双乳液液滴的介电泳响应。用于分析液滴界面和总电泳(DEP)力的偏振的核心壳模型。通过玻璃毛细管产生的水包内液滴,在低场频率下经历负面DEP。然而,在高频率下,通过调节液滴壳厚度或芯导率来调节DEP的极性。然后,研究了具有两个内芯的液滴的行为,其中液滴经历旋转,然后被强的场区域被泄露或吸引。这项工作应该有利于各种应用,需要通过电场操纵双乳液液滴。

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