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Electrospun metal nanofiber webs as high-performance transparent electrode

机译:电纺金属纳米纤维网作为高性能透明电极

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摘要

Transparent electrodes, indespensible in displays and solar cells, are currently dominated by indium tin oxide (ITO) films although the high price of indium, brittleness of films, and high vacuum deposition are limiting their applications. Recently, solution-processed networks of nanostructures such as carbon nanotubes (CNTs), graphene, and silver nanowires have attracted great attention as replacements. A low junction resistance between nanostructures is important for decreasing the sheet resistance. However, the junction resistances between CNTs and boundry resistances between graphene nanostructures are too high. The aspect ratios of silver nanowires are limited to ~100, and silver is relatively expensive. Here, we show high-performance transparent electrodes with copper nanofiber networks by a low-cost and scalable electrospinning process. Copper nanofibers have ultrahigh aspect ratios of up to 100000 and fused crossing points with ultralow junction resistances, which result in high transmitance at low sheet resistance, e.g., 90% at 50 Ω/sq. The copper nanofiber networks also show great flexibility and stretchabilty. Organic solar cells using copper nanowire networks as transparent electrodes have a power efficiency of 3.0%, comparable to devices made with ITO electrodes.
机译:尽管铟的高价格,膜的脆性和高真空沉积限制了它们的应用,但是在显示器和太阳能电池中不可缺少的透明电极目前主要由铟锡氧化物(ITO)膜主导。最近,诸如碳纳米管(CNT),石墨烯和银纳米线之类的纳米结构的固溶处理网络已经引起了极大的关注。纳米结构之间的低结电阻对于降低薄层电阻很重要。然而,CNT之间的结电阻和石墨烯纳米结构之间的结电阻太高。银纳米线的长宽比限制在100左右,并且银相对昂贵。在这里,我们通过低成本和可扩展的静电纺丝工艺展示了具有铜纳米纤维网络的高性能透明电极。铜纳米纤维具有高达100000的超高长宽比和融合的交叉点以及超低的结点电阻,可在低薄层电阻(例如在50Ω/ sq下达到90%)的情况下实现高透射率。铜纳米纤维网络还显示出极大的柔韧性和可拉伸性。与使用ITO电极制成的设备相比,使用铜纳米线网络作为透明电极的有机太阳能电池的功率效率为3.0%。

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