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Effect of substrate wettability in liquid dielectrophoresis (LDEP) based droplet generation: Theoretical analysis and experimental confirmation

机译:基质润湿性在基于液体介电泳(LDEP)的液滴产生中的影响:理论分析和实验确认

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摘要

The generation of droplets for biological reactions at the microscale can be achieved by many techniques, among which the so-called liquid dielectrophoresis technique (LDEP). This is not a new process, but the parameters influencing actuation voltage still need further insight: size and geometry (electrodes width and gap, dielectric thickness), materials (dielectric constant), liquids (surface tension, dielectric constant, conductivity), working conditions (voltage, frequency) and substrate wettability (contact angle). This large experimental space is firstly reduced using non dimensional numbers and then studied in a systematic way thanks to the design of experiments. The contact angle influence is explained thanks to a new analytical model. To summarize, this paper recalls analytical models used to predict the voltage threshold required to develop a liquid rivulet from a mother drop, taking the contact angle into account and providing a large set of experimental results.
机译:可以通过许多技术来实现用于微尺度的生物反应的液滴的产生,其中包括所谓的液体介电电泳技术(LDEP)。这不是一个新过程,但是影响驱动电压的参数仍然需要进一步了解:尺寸和几何形状(电极宽度和间隙,介电厚度),材料(介电常数),液体(表面张力,介电常数,电导率),工作条件(电压,频率)和基材润湿性(接触角)。首先使用无量纲数减少了如此大的实验空间,然后借助实验设计以系统的方式对其进行了研究。借助新的分析模型解释了接触角的影响。总而言之,本文回顾了一些分析模型,这些模型用于预测从母滴形成液体小溪所需的电压阈值,同时考虑了接触角并提供了大量实验结果。

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