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Droplet dispensing and splitting by electrowetting on dielectric digital microfluidics

机译:在电介质数字微流体上通过电润湿进行液滴分配和分离

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The present study investigates two essential capabilities of electrowetting on dielectric digital microfluidics — 1) high precision and consistency in volume of a unit nanodrop dispensed from a reservoir, and 2) reduction of time to dispense and split drops. These capabilities are sought in applications that need tiny but accurate volume of liquid delivery at high flow rate. For this purpose, we mainly focused on geometry of electrodes and developed novel shapes and arrangements of electrodes in electrowetting on dielectric microfluidic device. To dispense liquid droplets in higher volume precision and consistency, a novel reservoir design named TCC reservoir is introduced. To reduce time to dispense a droplet, L-junction is developed. Y-junction is designed to split a droplet into two at the same speed as droplet dispensing speed by the L-junction, and hence increase the number of droplets arrive to the target area (i.e. at high frequency delivery).
机译:本研究研究了电介质数字微流体电润湿的两个基本功能-1)从储液器中分配的单位纳米液滴的体积的高精度和体积一致性,以及2)减少分配和分裂液滴的时间。在需要微小但准确的高流量液体输送量的应用中,需要这些功能。为此,我们主要研究电极的几何形状,并在电介质微流控器件的电润湿中开发了新颖的电极形状和布置。为了以更高的体积精度和稠度分配液滴,引入了一种名为TCC储罐的新型储罐设计。为了减少分配液滴的时间,开发了L型结。 Y形接头设计为通过L形接头以与液滴分配速度相同的速度将液滴分成两部分,因此增加了到达目标区域的液滴数量(即,以高频传送)。

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