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首页> 外文期刊>SIAM journal on applied dynamical systems >Novel p-Type Conductive Semiconductor Nanocrystalline Film as the Back Electrode for High-Performance Thin Film Solar Cells
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Novel p-Type Conductive Semiconductor Nanocrystalline Film as the Back Electrode for High-Performance Thin Film Solar Cells

机译:新型P型导电半导体纳米晶膜作为高性能薄膜太阳能电池的后电极

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摘要

Thin film solar cells, due to the low cost, high efficiency, long-term stability, and consumer applications, have been widely applied for harvesting green energy. All of these thin film solar cells generally adopt various metal thin films as the back electrode, like Mo, Au, Ni, Ag, Al, graphite, and so forth. When they contact with p-type layer, it always produces a Schottky contact with a high contact potential barrier, which greatly affects the cell performance. In this work, we report for the first time to find an appropriate p-type conductive semiconductor film, digenite Cu9S5 nanocrystalline film, as the back electrode for CdTe solar cells as the model device. Its low sheet resistance (16.6 Omega/sq) could compare to that of the commercial TCO films (6-30 Omega/sq), like FTO, ITO, and AZO. Different from the traditonal metal back electrode, it produces a successive gradient-doping region by the controllable Cu diffusion, which greatly reduces the contact potential barrier. Remarkably, it achieved a comparable power conversion efficiency (PCE, 11.3%) with the traditional metal back electrode (Cu/Au thin films, 11.4%) in CdTe cells and a higher PCE (13.8%) with the help of the Au assistant film. We believe it could also act as the back electrode for other thin film solar cells (alpha-Si, CuInS2, CIGSe, CZTS, etc.), for their performance improvement.
机译:由于成本低,效率,长期稳定性和消费者应用,薄膜太阳能电池已被广泛应用于收获绿色能源。所有这些薄膜太阳能电池通常采用各种金属薄膜作为后电极,如Mo,Au,Ni,Ag,Al,石墨等。当它们与p型层接触时,它总是产生与高电平潜在屏障的肖特基接触,这极大地影响了电池性能。在这项工作中,我们首次报告以找到适当的p型导电半导体膜,Digenite Cu9S5纳米晶膜,作为CdTe太阳能电池的后电极作为模型装置。它的低薄层电阻(16.6欧米加/平方)可以与商业TCO薄膜(6-30欧米加/平方)相比,如FTO,ITO和AZO。与Traditonal金属背电极不同,它通过可控Cu扩散产生连续梯度掺杂区域,这大大减少了接触电位屏障。值得注意的是,借助于Au助理薄膜,在CdTe细胞中具有传统金属背电极(Cu / Au薄膜,11.4%)的传统金属背电极(Cu / Au薄膜,11.4%)的可比较功率转换效率(PCE,11.3%) 。我们认为它还可以充当其他薄膜太阳能电池(α-Si,Cuins2,CIGSE,CIGSE,CZTS等)的后电极,以进行性能改进。

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