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Critical AC frequency for stable operation of electrowetting-driven optofluidic devices with polymeric electrolyte solutions

机译:具有聚合物电解质溶液的电润湿驱动的Optive Optividic装置稳定运行的关键交流频率

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摘要

EWOD (electrowetting on dielectric) is a viable scheme to drive optofluidic devices that utilize the liquid interface as a refractive surface. Although AC (alternating current) voltage is often applied to an electrode in EWOD devices to improve electrical characteristics, it may cause oscillations of liquid interfaces which can be detrimental to the system's performance as an optical device. Here we experimentally identify the origin of the interfacial oscillations of polymeric electrolyte solutions by observing the dynamic responses of contact lines as a function of the AC frequency. Penetration of small charged matters into the dielectric film of the opposite polarity is shown to induce the voltage relaxation that leads to deterioration of electrowetting performance. Measuring the relaxation time scale which is different for each polarity allows us to find the critical AC frequency that ensures stable interface control.
机译:EWOD(电灌输电源)是一种可行的方案,用于驱动利用液体接口作为折射表面的邻接流体装置。 尽管AC(交流电流)电压通常被施加到EWOD器件中的电极以改善电气特性,但是它可能导致液体界面的振荡,这可能是对系统的性能作为光学装置的性能。 在这里,我们通过观察作为交流频率的函数的接触线的动态响应来实验识别聚合物电解质溶液的界面振荡的来源。 示出了小充电的渗透到相反极性的电介质膜中,以诱导导致电润湿性能的劣化的电压弛豫。 测量对每个极性不同的放松时间尺度允许我们找到确保稳定接口控制的关键交流频率。

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