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电沉积制备铜铟镓硒(CIGS)太阳能电池吸收层的研究现状 被引量:3
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作者 张建新 程海玉 《电镀与涂饰》 CAS CSCD 北大核心 2016年第24期1317-1321,共5页
概述了近几年水溶液体系中直流和脉冲电沉积法制备铜铟镓硒(cIGs)薄膜太阳能电池吸收层的研究情况,介绍了几种非水溶剂电沉积CIGS体系,展望了电沉积法制备CIGS薄膜的未来发展。
关键词 铜铟镓硒 薄膜 太阳能电池吸收层 电沉积 脉冲 非水溶剂
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电沉积制备铜系薄膜太阳能电池吸收层的研究现状 被引量:4
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作者 徐妍 李丽波 +3 位作者 王珩 杨秀春 谢菁琛 王文涛 《电镀与涂饰》 CAS CSCD 北大核心 2014年第24期1073-1077,共5页
介绍了一步沉积法和多步沉积法制备铜铟硒(CISe)、铜铟硫(CIS)、铜铟镓硒(CIGS)、铜锌锡硫(CZTS)等铜系薄膜太阳能电池吸收层的电沉积技术,并对其未来发展进行了展望。
关键词 铜系薄膜 电沉积 太阳能电池:吸收
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新策略助力钙钛矿太阳电池光电转化效率提高
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《西北电建》 2022年第1期16-16,共1页
近期,中国科学院合肥物质科学研究院固体物理研究所能源材料与器件制造研究部研究员潘旭团队、中国科学技术大学教授肖正国课题组合作,在钙钛矿太阳能电池研究中取得进展,制备出理想带隙为1.33 eV的铅锡混合耗钛矿作为太阳能电池吸收层... 近期,中国科学院合肥物质科学研究院固体物理研究所能源材料与器件制造研究部研究员潘旭团队、中国科学技术大学教授肖正国课题组合作,在钙钛矿太阳能电池研究中取得进展,制备出理想带隙为1.33 eV的铅锡混合耗钛矿作为太阳能电池吸收层,通过定向锚定策略(STA)对钙钛矿空位缺陷进行精确钝化处理,获得22.51%的光电转化效率(PCE)记录,光电转化效率有望超越传统铅基钙钛矿太阳电池。 展开更多
关键词 光电转化效率 钙钛矿太阳电池 钙钛矿太阳能电池 中国科学院 固体物理 中国科学技术大学 钝化处理 太阳能电池吸收层
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Model for increased efficiency of CIGS solar cells by a stepped distribution of carrier density and Ga in the absorber layer
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作者 SHARBATI Samaneh KESHMIRI Sayyed-Hossein 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第8期1533-1541,共9页
In this paper, several structures for multilayer Cu(In1-xGax) Se2 (CIGS) thin film solar cells are proposed to achieve high conversion efficiency. All of the modeling and simulations were based on the actual data of e... In this paper, several structures for multilayer Cu(In1-xGax) Se2 (CIGS) thin film solar cells are proposed to achieve high conversion efficiency. All of the modeling and simulations were based on the actual data of experimentally produced CIGS cells reported in the literature. In standard CIGS cells with a single absorber layer, the effects of acceptor density and Ga content on device performance were studied, and then optimized for maximum conversion efficiency. The same procedure was performed for cells with two and three sectioned CIGS absorber layers in which Cu and/or Ga contents were varied within each consecutive section. This produces an internal additional electric field within the absorber layer, which resulted in an increase in carrier collection for longer wavelength photons, and hence, improvement in the conversion efficiency of the cell. An increase of approximately 3% in efficiency is predicted for cells with two layer absorbers. For multilayer cells in which Cu and Ga distribution were stepped simultaneously, the improvement could be approximately 3.5%. This improvement is due to; enhanced carrier collection for longer-wavelength photons, and reduced recombination at the heterojunction and back regions of the cell. These results are confirmed by the physics of the cells. 展开更多
关键词 Cu (In Ga)Se2 (CIGS) multilayer thin film solar cell quantum efficiency
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