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Concentration and binary separation of micro particles for droplet-based digital microfluidics

机译:基于液滴的数字微流控技术中微粒的浓缩和二元分离

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摘要

This paper describes a concept of concentration and binary separation of particles and its experimental confirmations for digital microfluidics where droplets are driven by the mechanism of electrowetting-on-dielectric (EWOD).As a fundamental separation unit,a binary separation scheme is developed,separating two different types of particles in one droplet into two droplets,one type each.The separation scheme consists of three distinctive steps,each with their own challenges:(1) isolate two different types of particles by electrophoresis into two regions inside a mother droplet,(2) physically split the mother droplet into two daughter droplets by EWOD actuation so that each type of particle is concentrated in each daughter droplet,and (3) free the daughter droplets from the separation site by EWOD to ready them for follow-up microfluidic operations.By applying a similar procedure to a droplet containing only one type of particle,two daughter droplets of different particle concentrations can be created.Using negatively charged carboxylate modified latex (CML) particles,83% of the total particles are concentrated in a daughter droplet.Successful binary separation is also demonstrated using negatively charged CML particles and no-charge-treated polystyrene particles.Despite the undesired vortex developed inside the mother droplet,about 70% of the total CML particles are concentrated in one daughter droplet while about 70% of the total polystyrene particles are concentrated in the other daughter droplet.
机译:本文描述了颗粒的浓缩和二元分离的概念,以及对数字微流控技术的实验证实,其中数字微流体通过电介质上电润湿(EWOD)的原理驱动液滴。作为基本分离单元,开发了一种二元分离方案,将其分离一个液滴中的两种不同类型的颗粒分成两个液滴,每种类型。分离方案包括三个不同的步骤,每个步骤都有其自身的挑战:(1)通过电泳将两种不同类型的颗粒分离到母液滴内部的两个区域, (2)通过EWOD致动将母滴物理拆分为两个子滴,以使每种类型的颗粒都集中在每个子滴中;(3)通过EWOD将子滴从分离位置中释放出来,以备后续微流处理通过对仅包含一种类型的粒子的液滴应用相似的过程,即两个具有不同粒子浓度的子液滴使用带负电荷的羧酸盐改性的乳胶(CML)颗粒,总颗粒中有83%浓缩在子液滴中。使用带负电荷的CML颗粒和未经电荷处理的聚苯乙烯颗粒也证明了成功的二元分离。在母滴内部形成不希望有的涡流,大约70%的CML颗粒集中在一个子滴中,而大约70%的聚苯乙烯颗粒则集中在另一个子滴中。

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