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Capacitive sensing of droplets for microfluidic devices based on thermocapillary actuation

机译:基于热毛细管致动的微流控设备液滴的电容感测

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摘要

The design and performance of a miniaturized coplanar capacitive sensor is presented whose electrode arrays can also function as resistive microheaters for thermocapillary actuation of liquid films and droplets. Optimal compromise between large capacitive signal and high spatial resolution is obtained for electrode widths comparable to the liquid film thickness measured, in agreement with supporting numerical simulations which include mutual capacitance effects. An interdigitated, variable width design, allowing for wider central electrodes, increases the capacitive signal for liquid structures with non-uniform height profiles. The capacitive resolution and time response of the current design is approximately 0.03 pF and 10 ms, respectively, which makes possible a number of sensing functions for nanoliter droplets. These include detection of droplet position, size, composition or percentage water uptake for hygroscopic liquids. Its rapid response time allows measurements of the rate of mass loss in evaporating droplets.
机译:提出了一种小型共面电容式传感器的设计和性能,该传感器的电极阵列还可以用作电阻式微加热器,用于液体薄膜和液滴的热毛细管驱动。对于与测量的液膜厚度相当的电极宽度,可以获得大电容信号和高空间分辨率之间的最佳折衷,这与包括互电容效应的支持数值模拟相符。叉指式可变宽度设计允许使用更宽的中心电极,从而增加了具有不均匀高度轮廓的液体结构的电容信号。当前设计的电容分辨率和时间响应分别约为0.03 pF和10 ms,这使纳升微滴具有多种传感功能。这些包括检测吸湿性液体的液滴位置,大小,组成或吸水百分比。它的快速响应时间可以测量蒸发液滴中的质量损失率。

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