Department of Mechanical Engineering, The Hong Kong University of Science and Technology, Hong Kong, China.
Lab Chip. 2013 Mar 7;13(5):962-9. doi: 10.1039/c2lc41060e. Epub 2013 Jan 21.
Precharged droplets can facilitate manipulation and control of low-volume liquids in droplet-based microfluidics. In this paper, we demonstrate non-contact electrostatic charging of droplets by polarizing a neutral droplet and splitting it into two oppositely charged daughter droplets in a T-junction microchannel. We performed numerical simulation to analyze the non-contact charging process and proposed a new design with a notch at the T-junction in aid of droplet splitting for more efficient charging. We experimentally characterized the induced charge in droplets in microfabricated devices. The experimental results agreed well with the simulation. Finally, we demonstrated highly effective droplet manipulation in a path selection unit appending to the droplet charging. We expect our work could enable precision manipulation of droplets for more complex liquid handling in microfluidics and promote electric-force based manipulation in 'lab-on-a-chip' systems.
预充电液滴可以方便地在基于液滴的微流控中操纵和控制低体积液体。在本文中,我们通过极化中性液滴并在 T 形微通道中将其分裂成两个带相反电荷的子液滴来演示非接触静电充电。我们进行了数值模拟来分析非接触充电过程,并提出了一种带有 T 形结处缺口的新型设计,以辅助液滴分裂从而实现更高效的充电。我们在微制造器件中对液滴中的感应电荷进行了实验表征。实验结果与模拟结果吻合良好。最后,我们在添加到液滴充电的路径选择单元中展示了高效的液滴操纵。我们期望我们的工作可以实现更复杂的微流控中液滴的精密操纵,并推动基于电力的“片上实验室”系统中的操纵。