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Integrating electrowetting into micromanipulation of liquid droplets

机译:将电润湿集成到液滴的微处理中

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摘要

Electrowetting is proposed as a new principle for micromanipulation of a liquid droplet. A conical gripper was used to pick up a droplet and release it onto a substrate by controlling the wetting property between the droplet and the substrate using electrowetting. The rupture process of the liquid bridge between the gripper and the substrate as formed during the pick-up and release stages is studied using a precise numerical method and the arc approximation. The efficiency of micromanipulation is quantified using a term volumetric distribution ratio, which is the volume of the droplet retained by the substrate divided by the whole volume of the liquid droplet during a rupture process, for different combinations of contact angles between the liquid and the gripper or the substrate and the aperture of the conical gripper. Based on the theoretical analysis, an optimized micromanipulation process is suggested which could achieve 100% efficiency by carefully choosing the parameters mentioned above. Preliminary experiments are performed with a commercially available AFM probe to demonstrate this concept. The experimental results are compared with the theoretical prediction proposed here.
机译:提出电润湿作为液滴微操作的新原理。使用锥形夹持器拾取液滴,并通过使用电润湿来控制液滴与基底之间的润湿特性,将其释放到基底上。使用精确的数值方法和电弧近似方法研究了在拾取和释放阶段形成的夹持器和基板之间的液桥断裂过程。使用术语体积分布比(对于在液体和夹具之间接触角的不同组合)的术语体积分布比(在破裂过程中,基片保留的液滴的体积除以液滴的总体积)来量化显微操作的效率。或圆锥形夹具的基片和孔。根据理论分析,提出了一种优化的微处理工艺,通过仔细选择上述参数可以达到100%的效率。用市售的AFM探针进行了初步实验,以证明这一概念。将实验结果与此处提出的理论预测进行了比较。

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