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Low-Cost Silver Screen-Printed Electrowetting on Dielectrics Structure for Optofluidic Switches

机译:低成本银屏幕印刷电灌输电介质结构,用于镀铂开关

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This work demonstrates a low-cost fabrication method for Electrowetting-on-Dielectric (EWOD) structures for microsystem and Lab-on-a-chip applications. The electrowetting effect allows droplet movement by manipulating the surface tension equilibrium in an EWOD system. A voltage-induced imbalance of the contact angle (CA) at the triple contact line leads to droplet actuation into the direction of the smaller CA. The presented low-cost EWOD stack consists of a suitable substrate, actuation electrodes and dielectric/hydrophobic layers. Screen printed silver electrodes on glass substrates were investigated and characterized. Indium Tin Oxide (ITO) glass slides with a top coated Teflon fluoropolymer were used as electrical counter electrodes. As an application, a demonstrator of a simple optofluidic (OF) switch is simulated in terms of optical path switching time and fabricated using the silver screen printed setup. The incident beam of a laser light source becomes deflected depending on the position of an EWOD actuated droplet inside the device.
机译:这项工作显示了用于微系统和实验室应用的电润湿 - 介电(EWOD)结构的低成本制造方法。通过操纵EWOD系统中的表面张力平衡,电润湿效果允许液滴运动。在三相接触线处的接触角(CA)的电压诱导的不平衡导致液滴致动到较小的CA方向上。所示的低成本EWOD叠层包括合适的基板,致动电极和介电/疏水层。研究了玻璃基板上的丝网印刷银电极。用顶部涂覆的Teflon含氟聚合物用氧化铟锡(ITO)玻璃载玻片用作电反应电极。作为应用,在光路切换时间方面模拟了简单的Optofloic(of)开关的示范器,并使用银屏印刷设置制造。激光光源的入射光束根据装置内部的EWOD致动液滴的位置而变偏。

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