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A water-based silver nanowire ink for fabricating high performance transparent conductive films

机译:用于制备高性能透明导电膜的水性银纳米线油墨

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As a promising candidate of ITO, silver nanowire transparent conductive film had drawn much attention due to the excellent optical-electronic performance and flexible property. Water was considered as a promising candidate of organic solvents for dispersion of AgNWs. However, there was still few researches on water-based AgNWs ink and the influence of additives on the properties of AgNWs films. In this work, two water-based inks were proposed by adding trace of gellan gum and polyvinyl alcohol (PVA) to enhance the dispersion of AgNWs in water and wettability with substrates. Transparent conductive films with excellent optical-electronic performance were obtained by scrape coating method using the prepared inks. The Feature of Merit (FOM) of the AgNWs-GG film and AgNWs-GG-PVA film exceeded 200, much better than pristine AgNWs film. And the uniformity of the sheet resistance (Rs) was also improved. Tape adhesion test showed AgNWs-GG- PVA film have excellent adhesion to substrates. Additionally, the TCFs fabricated by the prepared inks had better resistance of ethanol than the pristine AgNWs film.
机译:作为ITO的有希望的候选者,银纳米线透明导电膜由于其优异的光电性能和柔性而备受关注。水被认为是用于分散AgNWs的有机溶剂的有前途的候选者。然而,关于水性AgNWs油墨以及添加剂对AgNWs薄膜性能的影响的研究还很少。在这项工作中,提出了两种水性油墨,方法是加入痕量的吉兰糖胶和聚乙烯醇(PVA),以增强AgNWs在水中的分散性和与基材的润湿性。使用所制备的油墨通过刮涂法获得具有优异的光电性能的透明导电膜。 AgNWs-GG膜和AgNWs-GG-PVA膜的优异性能(FOM)超过200,远优于原始的AgNWs膜。并且还改善了薄层电阻(Rs)的均匀性。胶带粘合性测试表明,AgNWs-GG-PVA膜对基材具有优异的粘合性。此外,与原始的AgNWs薄膜相比,由制备的油墨制备的TCF具有更好的耐乙醇性。

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