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Doping and Design of Flexible Transparent Electrodes for High-Performance Flexible Organic Solar Cells: Recent Advances and Perspectives

机译:用于高性能柔性有机太阳能电池柔性透明电极的掺杂和设计:最近的进步和观点

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Substantial effort has been devoted to both chemical doping and design of flexible transparent electrodes (FTEs) for flexible organic solar cells (OSCs) in the past decade. Poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate), graphene, metal nanostructures, metal oxide/ultrathin metal/metal oxide, Mxene, and their hybrid electrodes emerge to be the most promising flexible conducting materials over indium tin oxide. The FTE fabrications play a critical role in flexible OSCs. This feature review article summarizes the current status on the researches of the FTEs including various approaches and strategies to boost the conductivity, work function, mechanical flexibility, wettability, etc, which directly affect the performances of the flexible OSCs. The most cutting edge progresses on both FTEs and flexible OSCs are highlighted along the line. Advantages and plausible issues are pointed out. Perspectives are provided that can advance the developments of the flexible OSCs. This review raises the awareness for the importance of developing plenty of FTEs and reveals their critical role in flexible OSCs.
机译:在过去十年中,柔性有机太阳能电池(OSC)的柔性透明电极(FTES)的柔性透明电极(FTE)的柔性掺杂和设计都致力于。聚(3,4-乙二氧基噻吩):聚(苯乙烯磺酸盐),石墨烯,金属纳米结构,金属氧化物/超薄金属/金属氧化物,MXENE及其杂种电极是在氧化铟锡上最有前途的柔性导电材料。 FTE制造在灵活的OSC中发挥着关键作用。此功能审查文章总结了CTES研究的当前状态,包括促进导电性,工作功能,机械灵活性,润湿性等各种方法和策略,这直接影响了柔性OSC的性能。沿线突出显示两个FTES和柔性OSC上的最尖端的进展。指出了优势和合理的问题。提供了可以推进柔性OSC的发展的透视。本综述提高了对发展大量脚本的重要性的意识,并揭示了他们在灵活的奥斯普斯中的关键作用。

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