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Hydrogel-Based Tunable-Focus Liquid Microlens Array With Fast Response Time

机译:具有快速响应时间的基于水凝胶的可调焦点液体微透镜阵列

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摘要

We present a hydrogel-driven focus-tunable liquid microlens array on a curvilinear surface with much faster response time than previously reported. Water–oil interfaces pinned at polymer apertures serve as microlenses. Thermoresponsive poly(N-isopropylacrylamide) hydrogel incorporating glycidyl-methacrylate-functionalized graphene oxide is employed to provide faster actuation for focal length tuning. Thermoelectric modules based on Peltier effect were implemented to enhance the heat transfer to and dissipation from the hydrogel actuators. The average response time improves to 5 s, and the focal length ranges from 7 to 120 mm. Simulations were performed to characterize the thermal behavior of the microlens array during actuation. The microlens array is also demonstrated with an ability to be remotely controlled by infrared light. $hfill$[2011-0285]
机译:我们在曲线表面上提出了水凝胶驱动的聚焦可调液体微透镜阵列,其响应时间比以前报道的要快得多。固定在聚合物孔上的水-油界面起着微透镜的作用。结合了甲基丙烯酸缩水甘油酯官能化氧化石墨烯的热响应性聚(N-异丙基丙烯酰胺)水凝胶可为焦距调节提供更快的驱动力。实现了基于珀尔帖效应的热电模块,以增强与水凝胶致动器之间的热传递和散热。平均响应时间提高到5 s,焦距范围从7到120 mm。进行仿真以表征驱动期间微透镜阵列的热行为。还证明了微透镜阵列具有通过红外光遥控的能力。 $ hfill $ [2011-0285]

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