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Silver Nanowire Electrodes: Conductivity Improvement Without Post-treatment and Application in Capacitive Pressure Sensors

机译:银纳米线电极:无需后处理即可提高电导率并应用于电容式压力传感器

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摘要

Transparent electrode based on silver nanowires (AgNWs) emerges as an outstanding alternative of indium tin oxide film especially for flexible electronics. However, the conductivity of AgNWs transparent electrode is still dramatically limited by the contact resistance between nanowires at high transmittance. Polyvinylpyrrolidone (PVP) layer adsorbed on the nanowire surface acts as an electrically insulating barrier at wire–wire junctions, and some devastating post-treatment methods are proposed to reduce or eliminate PVP layer, which usually limit the application of the substrates susceptible to heat or pressure and burden the fabrication with high-cost, time-consuming, or inefficient processes. In this work, a simple and rapid pre-treatment washing method was proposed to reduce the thickness of PVP layer from 13.19 to 0.96 nm and improve the contact between wires. AgNW electrodes with sheet resistances of 15.6 and 204 Ω sq−1 have been achieved at transmittances of 90 and 97.5 %, respectively. This method avoided any post-treatments and popularized the application of high-performance AgNW transparent electrode on more substrates. The improved AgNWs were successfully employed in a capacitive pressure sensor with high transparency, sensitivity, and reproducibility.Electronic supplementary materialThe online version of this article (doi:10.1007/s40820-014-0018-0) contains supplementary material, which is available to authorized users.
机译:基于银纳米线(AgNWs)的透明电极成为铟锡氧化物薄膜的杰出替代品,特别是对于柔性电子产品。但是,AgNWs透明电极的电导率仍然受到纳米线在高透射率下的接触电阻的显着限制。吸附在纳米线表面的聚乙烯吡咯烷酮(PVP)层在导线与导线的连接处充当电绝缘屏障,并且提出了一些破坏性的后处理方法来减少或消除PVP层,这通常会限制易受热或热影响的基材的应用。用高成本,费时或效率低下的工艺给制造施加压力并加重负担。在这项工作中,提出了一种简单而快速的预处理清洗方法,以将PVP层的厚度从13.19 nm减小到0.96 nm,并改善导线之间的接触。 AgNW电极的薄层电阻分别为15.6和204Ωsq ,透射率分别为90%和97.5%。该方法避免了任何后处理,并在更多基板上推广了高性能AgNW透明电极的应用。改进的AgNW被成功地用于具有高透明度,灵敏度和可重复性的电容式压力传感器中。电子补充材料本文的在线版本(doi:10.1007 / s40820-014-0018-0)包含补充材料,授权使用用户。

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