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Self-powered electrowetting optical switch driven by a triboelectric nanogenerator for wireless sensing

机译:由摩擦纳米电磁炉驱动的自动电润湿光开关,用于无线传感

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摘要

A self-powered electrowetting optical switch (EOS) was achieved by a combination of a freestanding sliding mode triboelectric nanogenerator (FS-TENG) and an electrically tunable liquid lens (ETULL). The ETULL was fabricated by a conducting fluid, an insulating oil, an acrylic cylindrical spacer as well as two indium tin oxide (ITO) electrodes. Upon applying a voltage on the ETULL, the interface between two liquids was curved due to the electrowetting effect, forming an insulating oil based concave lens. The light propagation through the ETULL could be switched between the on state, which means no light diverging at the flat interface, and the off state, where the light was diverged by the concave lens. The switch was controlled by the voltage generated by the FSTENG. To verify the effectiveness of the proposed self-powered EOS, a wireless sensing system was performed and the mechanical motions were remotely detected. Such a mechanical-electrical-optical signal conversion enables the wireless sensing, which can be applied for various fields such as human-machine interfaces, remote monitoring of the infrastructure health, security detections, wireless smart keyboard, etc.
机译:通过独立的滑动模式摩擦纳米电磁器(FS-TENG)和电动液体透镜(ETULL)的组合来实现自动电润湿光开关(EOS)。通过导电流体,绝缘油,丙烯酸圆柱形隔离物以及两个氧化铟锡(ITO)电极制造精硫。在将电压施加在离子上时,由于电润湿效果,两个液体之间的界面是弯曲的,形成绝缘油的凹透镜。可以通过Etull在接通状态之间切换通过Etull的光传播,这意味着在扁平界面处没有发散,并且光的偏离状态在凹形透镜发散。该开关由FSTENG产生的电压控制。为了验证所提出的自动EOS的有效性,执行无线传感系统,远程检测到机械运动。这种机械电气光学信号转换使得无线感测能够应用于诸如人机接口,基础设施健康,安全检测,无线智能键盘等的远程监控的各种领域。

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