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Ultrasonic-sprayed Graphene Oxide and Air-sprayed Silver Nanowire for the Preparation of Flexible Transparent Conductive Films

机译:超声喷涂氧化石墨烯和空气喷涂银纳米线用于制备柔性透明导电膜

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摘要

Simple solution spray coating of graphene oxide (GO) and Ag nanowires (AgNWs) was employed to prepare transparent conductive films (TCFs). We used air and ultrasonic spraying, and the effects of different spraying methods on the properties of TCFs were investigated. Ultrasonic spraying exhibited a significant decrease in the length of AgNWs and increase of sheet resistance. Thin two-dimensional reduced graphene oxide (rGO) prepared by ultrasonic spraying with tightly bound conductive Ag nanowires prepared by air spraying effectively decreased the sheet resistance and increased the transparency of the hybrid films. Air-sprayed rGO (0.25 mL)-AgNW (0.45 mL)/ poly(methyl methacrylate) exhibited a sheet resistance of 328 Ω/□; however, the ultrasonic-sprayed rGO (0.25 mL)-air-sprayed AgNW (0.45 mL) on a poly(methyl methacrylate) showed a significant improvement of sheet resistance to 86 Ω/□ with a light transmittance of 78%. The sprayed rGO-AgNW showed little change in sheet resistance after 200 bending cycles with a radius curvature of 10 mm.
机译:使用氧化石墨烯(GO)和银纳米线(AgNWs)的简单溶液喷涂来制备透明导电膜(TCF)。我们使用了空气喷涂和超声波喷涂,并研究了不同喷涂方法对TCFs性能的影响。超声喷涂显示出AgNWs长度的显着减少和薄层电阻的增加。通过用空气喷涂制备的紧密结合的导电银纳米线,通过超声喷涂制备的二维二维还原氧化石墨烯(rGO),可以有效降低薄层电阻并提高杂化膜的透明度。空气喷涂的rGO(0.25 mL)-AgNW(0.45 mL)/聚(甲基丙烯酸甲酯)的薄层电阻为328Ω/□;然而,在聚甲基丙烯酸甲酯上超声喷涂的rGO(0.25 mL)-空气喷涂的AgNW(0.45 mL)显示出薄层电阻显着提高至86Ω/□,透光率达78%。喷涂的rGO-AgNW在200个弯曲循环(半径曲率为10 mm)后,​​薄层电阻几乎没有变化。

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