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Sol–Gel-Processed Organic–Inorganic Hybrid for Flexible Conductive Substrates Based on Gravure-Printed Silver Nanowires and Graphene

机译:基于凹版印刷的银纳米线和石墨烯的溶胶-凝胶处理的有机-无机杂化材料用于柔性导电基板

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摘要

In this study, an organic–inorganic (O–I) nanohybrid obtained by incorporating an alkoxysilane-functionalized amphiphilic polymer precursor into a SiO2–TiO2 hybrid network was successfully utilized as a buffer layer to fabricate a flexible, transparent, and stable conductive substrate for solution-processed silver nanowires (AgNWs) and graphene under ambient conditions. The resulting O–I nanohybrid sol (denoted as AGPTi) provided a transmittance of the spin-coated AgNWs on an AGPTi-coated glass of 99.4% and high adhesion strength after a 3M tape test, with no visible changes in the AgNWs. In addition, AGPTi acted as a highly functional buffer layer, absorbing the applied pressure between the conductive materials, AgNWs and graphene, and rigid substrate, leading to a significant reduction in sheet resistance. Furthermore, gravure-printed AgNWs and graphene on the AGPTi-based flexible substrate had uniform line widths of 490 ± 15 and 470 ± 12 µm, with 1000-cycle bending durabilities, respectively.
机译:在这项研究中,通过将烷氧基硅烷官能化的两亲性聚合物前体掺入SiO2-TiO2杂化网络中获得的有机-无机(O-I)纳米杂化材料成功地用作缓冲层,以制造柔性,透明和稳定的导电基材在环境条件下进行固溶处理的银纳米线(AgNWs)和石墨烯。所得的O–I纳米杂化溶胶(表示为AGPTi)在3GP胶带测试后,在AGPTi涂层玻璃上提供了旋涂AgNW的透射率为99.4%,并且具有很高的粘合强度,而AgNWs没有明显变化。此外,AGPTi充当了功能强大的缓冲层,吸收了导电材料,AgNWs和石墨烯以及刚性基板之间的施加压力,从而大大降低了薄层电阻。此外,基于AGPTi的柔性基板上的凹版印刷的AgNWs和石墨烯具有490±15和470±12 µm的均匀线宽,分别具有1000个循环的弯曲耐久性。

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