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首页> 外文期刊>Progress in photovoltaics >Interdigitated back-contacted structure: A different approach towards high-efficiency ultrathin copper indium gallium (di)selenide solar cells
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Interdigitated back-contacted structure: A different approach towards high-efficiency ultrathin copper indium gallium (di)selenide solar cells

机译:交叉的背面接触结构:一种不同的高效超薄铜铟镓(DI)Selenide太阳能电池的方法

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摘要

An interdigitated back-contacted (IBC) configuration is proposed for submicron copper indium gallium (di)selenide (CIGS). In a modelling platform, the structure was opto-electrically optimized for maximum efficiency. The results are compared with a reference front/back-contacted (FBC) solar cell with similar absorber thickness and exhibiting 11.9% efficiency. The electrical passivation at the front side is accomplished by an Al(2)O(3)layer, which is endowed with negative fixed charges. The results indicate that with an optimal geometry and engineered bandgap grading, the efficiency of the new IBC structure can reach 17%. Additionally, with a reasonably low defect density in the absorber layer, efficiencies as high as 19.7% and open-circuit voltage comparable with that of the record solar cell are possible with the IBC structure.
机译:提出了一种用于亚微米铜铟镓(DI)硒化烯(CIGS)的亚微米铜的接触(IBC)配置。 在建模平台中,该结构是光学优化的,以最大限度地效率。 将结果与参考前/后接触(FBC)太阳能电池进行比较,具有相似的吸收率,效率为11.9%。 前侧的电钝化由Al(2)O(3)层完成,该层赋予负固定电荷。 结果表明,通过最佳的几何形状和工程带隙分级,新IBC结构的效率可以达到17%。 另外,在吸收层中具有相当低的缺陷密度,可以使用IBC结构与记录太阳能电池的高达19.7%的效率和与记录太阳能电池相当的开口电压。

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