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Optical properties of silicon-based thin-film solar cells in substrate and superstrate configuration

机译:衬底和上层结构中硅基薄膜太阳能电池的光学特性

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摘要

The optical properties of microcrystalline silicon substrate-type solar cells with a front ZnO thickness of 500-1000 nm as required for monolithic series connection in PV-modules are investigated. The surface texture of the front ZnO was varied to study the possibility to reduce reflection losses and to improve light trapping. Before encapsulation, certain textures of the front ZnO exhibit improved light coupling for substrate solar cells. For substrate solar cells encapsulated with EVA and a glass cover, however, additional texture of the front ZnO has hardly any effect. Encapsulation also removes the antireflection conditions in case that the front ZnO was originally designed as ARC. So far, the quantum efficiency of encapsulated substrate solar cells does not show the high level as observed in superstrate solar cells possibly due to parasitic absorption in the front and back contact and the not optimized texture of the reflector (substrate). (C) 2002 Elsevier Science B.V. All rights reserved. [References: 22]
机译:研究了光伏组件中单片串联所需的前ZnO厚度为500-1000 nm的微晶硅衬底型太阳能电池的光学特性。改变正面ZnO的表面质地,以研究减少反射损耗和改善光陷获的可能性。在封装之前,前部ZnO的某些纹理表现出对衬底太阳能电池改善的光耦合。但是,对于用EVA和玻璃盖封装的衬底太阳能电池,正面ZnO的附加纹理几乎没有任何影响。如果正面ZnO最初设计为ARC,则封装还消除了抗反射条件。到目前为止,封装的基板太阳能电池的量子效率并未显示出在上层基板太阳能电池中观察到的高水平,这可能是由于正面和背面接触中的寄生吸收以及反射镜(基板)的纹理未优化。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:22]

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