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Recent progress in silver nanowire networks for flexible organic electronics

机译:柔性有机电子银纳米线网络的最新进展

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Recently, flexible transparent electrodes (FTEs) have attracted extensive attention as an essential element for future organic electronics (OEs), i.e. solution-processable, scalable and flexible organic electronics (FOEs). Although the traditional transparent electrode indium tin oxide (ITO) has been widely used in OEs, its brittleness and high cost significantly limit its application in the next generation of devices, typically flexible electronics. Thus, many alternatives, such as graphene, carbon nanotubes, conductive polymers, metal nanowires, metal grids and electrospun metallic nanofibers, have arisen at the forefront of FTEs. Among them, silver nanowire (AgNW) networks have attracted particular attention due to their excellent electrical conductivity and high transmittance, as well as facile availability and low cost. Since many studies on AgNWs have been published, a comprehensive review highlighting the advantages of AgNWs in FOEs is highly required. In this review, the synthesis and film fabrication of AgNWs have been firstly summarized, focusing especially on the properties of conductivity and light transmittance. Next, post treatments with different approaches to improve the conductivity of AgNWs have been included. And then, characterization of FTEs has been introduced with details on key parameters for FOEs. Furthermore, AgNW-based FOEs have been summarized to demonstrate the recent progress, such as organic light-emitting diodes (OLEDs), organic solar cells (OSCs), light-emitting electrochemical cells (LECs), organic field effect transistors (OFETs), organic memory devices (OMDs), etc. Finally, perspectives for AgNWs in FOEs have been discussed and concluded as well. It is expected that AgNWs could be the focus of future FOEs compared with other alternatives in terms of their advantages of optoelectronic properties, film-formation, solution-processability and flexibility.
机译:最近,柔性透明电极(FTE)吸引了广泛的关注作为未来有机电子(OES)的基本要素,即解决方案,可扩展,柔性有机电子(FOES)。虽然传统的透明电极铟锡(ITO)已广泛用于OES,但其脆性和高成本显着限制了其在下一代设备中的应用,通常是柔性电子器件。因此,许多替代方案,例如石墨烯,碳纳米管,导电聚合物,金属纳米线,金属栅和电纺金属纳米纤维在FTE的前沿出现。其中,由于其优异的导电性和高透射率以及容易的可用性和低成本,银纳米线(AGNW)网络引起了特别的关注。由于对AGNW的许多研究发表了许多研究,因此突出了突出的审查,突出了敌人在敌人的优势。在本文中,首先总结了AGNW的合成和薄膜制造,特别是对电导率和透光率的性质聚焦。接下来,已经包括不同方法以改善AGNW的电导率的后处理。然后,已经引入了FTE的表征,详细介绍了敌人的关键参数。此外,总结了基于AGNW的敌人以证明最近的进展,例如有机发光二极管(OLED),有机太阳能电池(OSC),发光电化学电池(LECS),有机场效应晶体管(OFET),有机记忆设备(OMDS)等。最后,已经讨论并结束了敌人的AGNWS的透视。预计与光电性能,成膜,溶液 - 加工性和柔韧性的优势方面,AGNW可能是未来敌人的重点。

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