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Fiber and fabric solar cells by directly weaving carbon nanotube yarns with CdSe nanowire-based electrodes

机译:通过直接编织纤维和织物的太阳能电池碳纳米管线CdSe nanowire-based电极

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摘要

Electrode materials are key components for fiber solar cells, and when combined with active layers (for light absorption and charge generation) in appropriate ways, they enable design and fabrication of efficient and innovative device structures. Here, we apply carbon nanotube yarns as counter electrodes in combination with CdSe nanowire-grafted primary electrodes (Ti wire) for making fiber and fabric-shaped photoelectrochemical cells with power conversion efficiencies in the range 1% to 2.9%. The spun-twist long nanotube yarns possess both good electrical conductivity and mechanical flexibility compared to conventional metal wires or carbon fibers, which facilitate fabrication of solar cells with versatile configurations. A unique feature of our process is that instead of making individual fiber cells, we directly weave single or multiple nanotube yarns with primary electrodes into a functional fabric. Our results demonstrate promising applications of semiconducting nanowires and carbon nanotubes in woven photovoltaics.
机译:电极材料是纤维的关键组件太阳能电池,当结合活性层(光吸收和电荷生成)适当的方法,使设计和制造效率和创新的设备结构。在结合CdSe反电极nanowire-grafted主电极导线(Ti)使纤维和织物做成的光电化学电池与权力转换效率在1%到2.9%之间。spun-twist长纳米管线具有良好导电性和机械灵活性相比,传统的金属线或碳纤维,便于制造太阳能电池与通用的配置。我们的过程,而不是独特的特性单个纤维细胞,直接编织单个或多个纳米管线主要电极成有功能的织物。演示的应用前景半导体纳米线和碳纳米管编织光电。

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