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首页> 外文期刊>Applied Surface Science >Electrically and mechanically enhanced Ag nanowires-colorless polyimide composite electrode for flexible capacitive sensor
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Electrically and mechanically enhanced Ag nanowires-colorless polyimide composite electrode for flexible capacitive sensor

机译:机电增强型Ag纳米线-无色聚酰亚胺复合电极,用于柔性电容传感器

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摘要

Silver nanowire (AgNW) network is known for its low percolation threshold, high conductivity and good flexibility, therefore, considered one of the best candidates for fabrication of flexible and transparent electrodes. However, a general approach to make the AgNWs-based electrodes, an overcoating of nanowire dispersion onto a transparent polymer, should make an issue of poor mechanical stability, mainly caused by low adhesion between the nanowires and polymer. In addition, a thin insulating layer of polyvinylpyrrolidone (PVP) formed on the surface of AgNWs deteriorates the conductivity of their network, which means that a post-processing such as high temperature annealing is essentially needed. Here we employed a plasma treatment with an inert gas to remove the residual PVP layer, so that the conductivity could be enhanced without employing any high temperature processing. Interestingly, the optical transmittance in the wavelength near 400 nm was also increased, resulting in more neutral coloration of the electrode. An inverted layer processing made the nanowires to be partially buried at the surface of colorless polyimide (cPI), so that the enhancement of mechanical stability and connectivity with overlying materials were simultaneously achieved. (C) 2016 Elsevier B.V. All rights reserved.
机译:银纳米线(AgNW)网络以其低渗透阈值,高电导率和良好的柔韧性而闻名,因此被认为是制造柔性和透明电极的最佳选择之一。但是,制造基于AgNWs的电极的一般方法是将纳米线分散体涂在透明聚合物上,这会引起机械稳定性差的问题,这主要是由于纳米线与聚合物之间的低附着力引起的。另外,在AgNWs的表面上形成的聚乙烯吡咯烷酮(PVP)薄绝缘层使它们的网络的导电性恶化,这意味着基本上需要诸如高温退火的后处理。在这里,我们采用惰性气体进行等离子体处理以去除残留的PVP层,从而无需进行任何高温处理即可提高电导率。有趣的是,在400nm附近的波长中的透光率也增加了,导致电极的颜色更中性。反向层处理使纳米线被部分掩埋在无色聚酰亚胺(cPI)的表面,因此可以同时提高机械稳定性和与上覆材料的连接性。 (C)2016 Elsevier B.V.保留所有权利。

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