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首页> 外文期刊>International Journal of Photoenergy >Review on Substrate and Molybdenum Back Contact in CIGS Thin Film Solar Cell
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Review on Substrate and Molybdenum Back Contact in CIGS Thin Film Solar Cell

机译:CIGS薄膜太阳能电池的衬底与钼背接触研究进展

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Copper Indium Gallium Selenide- (CIGS-) based solar cells have become one of the most promising candidates among the thin film technologies for solar power generation. The current record efficiency of CIGS has reached 22.6% which is comparable to the crystalline silicon- (c-Si-) based solar cells. However, material properties and efficiency on small area devices are crucial aspects to be considered before manufacturing into large scale. The process for each layer of the CIGS solar cells, including the type of substrate used and deposition condition for the molybdenum back contact, will give a direct impact to the efficiency of the fabricated device. In this paper, brief introduction on the production, efficiency, etc. of a-Si, CdTe, and CIGS thin film solar cells and c-Si solar cells are first reviewed, followed by the recent progress of substrates. Different deposition techniques’ influence on the properties of molybdenum back contact for CIGS are discussed. Then, the formation and thickness influence factors of the interfacial MoSe2 layer are reviewed; its role in forming ohmic contact, possible detrimental effects, and characterization of the barrier layers are specified. Scale-up challenges/issues of CIGS module production are also presented to give an insight into commercializing CIGS solar cells.
机译:硒化铜铟镓(CIGS)基太阳能电池已成为太阳能发电薄膜技术中最有希望的候选材料之一。目前CIGS的创纪录效率已达到22.6%,可与基于晶体硅(c-Si-)的太阳能电池相媲美。但是,小面积器件的材料特性和效率是大规模制造之前必须考虑的关键方面。 CIGS太阳能电池每一层的工艺,包括所用衬底的类型和钼背接触的沉积条件,都将直接影响所制造器件的效率。本文首先简要介绍了a-Si,CdTe和CIGS薄膜太阳能电池以及c-Si太阳能电池的生产,效率等,然后介绍了基板的最新进展。讨论了不同沉积技术对CIGS钼背接触性能的影响。然后,回顾了界面MoSe2层的形成和厚度影响因素。规定了其在形成欧姆接触,可能的有害作用和势垒层表征方面的作用。还提出了CIGS组件生产的规模化挑战/问题,以深入了解CIGS太阳能电池的商业化。

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