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Metal-electrode-free Window-like Organic Solar Cells with p-Doped Carbon Nanotube Thin-film Electrodes

机译:带p掺杂碳纳米管薄膜电极的无金属电极的窗口状有机太阳能电池

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摘要

Organic solar cells are flexible and inexpensive, and expected to have a wide range of applications. Many transparent organic solar cells have been reported and their success hinges on full transparency and high power conversion efficiency. Recently, carbon nanotubes and graphene, which meet these criteria, have been used in transparent conductive electrodes. However, their use in top electrodes has been limited by mechanical difficulties in fabrication and doping. Here, expensive metal top electrodes were replaced with high-performance, easy-to-transfer, aerosol-synthesized carbon nanotubes to produce transparent organic solar cells. The carbon nanotubes were p-doped by two new methods: HNO 3 doping via 'sandwich transfer', and MoO x thermal doping via 'bridge transfer'. Although both of the doping methods improved the performance of the carbon nanotubes and the photovoltaic performance of devices, sandwich transfer, which gave a 4.1% power conversion efficiency, was slightly more effective than bridge transfer, which produced a power conversion efficiency of 3.4%. Applying a thinner carbon nanotube film with 90% transparency decreased the efficiency to 3.7%, which was still high. Overall, the transparent solar cells had an efficiency of around 50% that of non-transparent metal-based solar cells (7.8%).
机译:有机太阳能电池既灵活又便宜,因此有望得到广泛的应用。已经报道了许多透明的有机太阳能电池,它们的成功取决于完全的透明性和高功率转换效率。最近,满足这些标准的碳纳米管和石墨烯已用于透明导电电极中。然而,它们在顶部电极中的使用受到制造和掺杂中的机械困难的限制。在这里,昂贵的金属顶部电极被高性能,易于转移,气溶胶合成的碳纳米管所取代,从而生产出透明的有机太阳能电池。碳纳米管通过两种新方法进行p掺杂:通过“夹心转移”进行HNO 3掺杂,以及通过“桥转移”进行MoO x热掺杂。尽管两种掺杂方法都可以改善碳纳米管的性能和器件的光伏性能,但是三明治式转移(电桥转换效率为4.1%)比桥式转移(电桥转换效率为3.4%)略有提高。使用具有90%透明性的更薄的碳纳米管薄膜将效率降低到3.7%,这仍然很高。总体而言,透明太阳能电池的效率约为非透明金属基太阳能电池(7.8%)的50%。

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