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Realization of a flexible and mechanically robust Ag mesh transparent electrode and its application in a PDLC device

机译:实现柔性且机械鲁棒AG网状透明电极及其在PDLC装置中的应用

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In this paper, flexible Ag electrodes with a hexagonal micromesh structure were fabricated on PET substrate using a photolithography technique. The effect of film thickness on optical and electrical properties of Ag electrodes was investigated systematically. Furthermore, these flexible transparent Ag mesh electrodes were firstly applied to a polymer dispersed liquid crystal (PDLC) device and its performance was evaluated. All of the Ag electrodes exhibited a high average transmittance of about 80.2–85.0% in the visible range (400–800 nm), and the minimum sheet resistance value reached 8.2 Ω sq ~(?1) . The prepared Ag mesh also showed an excellent performance of adhesion and bending, demonstrating its superior durability. The PDLC device based on Ag mesh electrodes showed comparable performance with that using ITO electrodes, indicating that the Ag mesh film can be a good substitution for ITO electrodes in PDLC devices and may find practical application in large area flexible devices.
机译:本文使用光刻技术在PET基板上制造具有六边形微微结构的柔性AG电极。系统地研究了膜厚度对Ag电极的光学和电性能的影响。此外,将这些柔性透明AG网电极首先施加到聚合物分散的液晶(PDLC)装置上,并评估其性能。所有AG电极在可见范围(400-800nm)中表现出约80.2-85.0%的高平均透射率,最小薄层电阻值达到8.2Ωsq〜(?1)。制备的AG网也显示出具有优异的粘合性和弯曲性能,展示其优异的耐用性。基于AG网状电极的PDLC器件显示出与使用ITO电极的相当性能,表明AG网膜可以是PDLC器件中ITO电极的良好替代,并且可以在大面积柔性器件中找到实际应用。

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