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Flexible, transparent patterned electrodes based on graphene oxide/silver nanowire nanocomposites fabricated utilizing an accelerated ultraviolet/ozone process to control silver nanowire degradation

机译:基于石墨烯/银纳米线纳米复合材料的柔性,透明图案电极利用加速紫外/臭氧方法制造,以控制银纳米线降解

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We developed flexible, transparent patterned electrodes, which were fabricated utilizing accelerated ultraviolet/ozone (UV/O3)-treated graphene oxide (GO)/silver nanowire (Ag-NW) nanocomposites via a simple, low-cost pattern process to investigate the feasibility of promising applications in flexible/wearable electronic and optoelectronic devices. The UV/O3 process of the GO/Ag-NW electrode was accelerated by the pre-heat treatment, and the degradation interruption of Ag NWs was removed by the GO treatment. After the deposition of the GO-treated Ag NW electrodes, the sheet resistance of the thermally annealed GO-treated Ag-NW electrodes was significantly increased by using the UV/O3 treatment, resulting in a deterioration of the GO-treated Ag NWs in areas exposed to the UV/O3 treatment. The degradation of the Ag NWs caused by the UV/O3 treatment was confirmed by using the sheet resistances, scanning electron microscopy images, X-ray photoelectron microscopy spectra, and transmittance spectra. While the sheet resistance of the low-density Ag-NW electrode was considerably increased due to the pre-thermal treatment at 90?°C for 10?min, that of the high-density Ag-NW electrode did not vary significantly even after a UV/O3 treatment for a long time. The degradation interference phenomenon caused by the UV/O3 treatment in the high-density Ag NWs could be removed by using a GO treatment, which resulted in the formation of a Ag-NW electrode pattern suitable for promising applications in flexible organic light-emitting devices. The GO treatment decreased the sheet resistance of the Ag-NW electrode and enabled the pattern to be formed by using the UV/O3 treatment. The selective degradation of Ag NWs due to UV/O3 treatment decreased the transparency of the Ag-NW electrode by about 8% and significantly increased its sheet resistance more than 100 times.
机译:我们开发了灵活的透明图案电极,通过简单,低成本的图案方法使用加速的紫外/臭氧(UV / O3) - 过滤的石墨烯(GO)/银纳米线(AG-NW)纳米复合材料进行制造,以研究可行性在柔性/可穿戴电子和光电器件中有前途的应用。通过预热处理加速了Go / Ag-NW电极的UV / O3工艺,通过去处理除去Ag NWs的降解中断。通过使用UV / O3处理沉积去处理的AG NW电极后,通过使用UV / O3处理显着增加了热退火的去处理的AG-NW电极的薄层电阻,导致在区域中的去处理AG NWS劣化暴露于UV / O3处理。通过使用薄层电阻,扫描电子显微镜图像,X射线光电子显微镜和透射光谱来确认由UV / O3处理引起的AG NWS的降解。虽然由于90Ω℃的预热处理10≤min,低密度Ag-NW电极的薄层电阻显着增加,但高密度Ag-NW电极的电极即使之后也没有显着变化UV / O3治疗很长一段时间。通过使用去处理可以除去由UV / O3处理引起的降解干扰现象,从而通过去处理除去,这导致形成适用于柔性有机发光器件中的有前途的应用的AG-NW电极图案。去处理降低了Ag-NW电极的薄层电阻,并使能通过使用UV / O3处理形成的图案。由于UV / O3处理引起的Ag NWs的选择性降解降低了Ag-NW电极的透明度约8%,并且显着增加其片材阻力超过100倍。

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