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Highly stable and stretchable graphene-polymer processed silver nanowires hybrid electrodes for flexible displays

机译:高度稳定且可拉伸的石墨烯-聚合物处理的银纳米线混合电极,用于柔性显示器

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摘要

A new type of highly stable, transparent and flexible hybrid electrode has been developed by integrating the encapsulation of a silver nanowires (AgNWs) network by polyvinyl alcohol (PVA) with a single-layer graphene on a flexible substrate. Compared with commercial indium tin oxide (ITO) film and pristine AgNWs-graphene hybrid film, this hybrid electrode formulation was found to exhibit excellent optical and electrical properties (84.0% at 550 nm R-S = 14.1 Omega square(-1)). Moreover, the PVA encapsulated-AgNWs-graphene hybrid electrode on a flexible substrate shows superior mechanical flexibility, reliability and long-term stability due to the multi-functional effects of PVA as the encapsulation layer. Finally, we employ this hybrid electrode to construct a flexible cholesteric liquid crystals (Ch-LCs) device, where the PVA layer in hybrid formation could be used as the orientation layer. This Ch-LCs device exhibits an impressive electrical-optical performance, demonstrating its potential as a transparent and stretchable electrode platform for flexible optoelectronics.
机译:通过将聚乙烯醇(PVA)对银纳米线(AgNWs)网络的封装与柔性基板上的单层石墨烯进行集成,已开发出一种新型的高度稳定,透明且柔性的混合电极。与商业化的铟锡氧化物(ITO)膜和原始的AgNWs-石墨烯杂化膜相比,发现该杂化电极配方具有出色的光学和电学性能(在550 nm R-S = 14.1 Omega square(-1)时为84.0%)。此外,由于PVA作为封装层的多功能作用,在柔性基板上的PVA封装的AgNWs-石墨烯混合电极表现出优异的机械柔韧性,可靠性和长期稳定性。最后,我们采用这种混合电极来构建柔性胆甾型液晶(Ch-LCs)器件,其中混合形成的PVA层可以用作取向层。这种Ch-LCs器件具有令人印象深刻的电光性能,证明了其作为用于柔性光电的透明可拉伸电极平台的潜力。

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