Kesterite Solar Cells: Insights into Current Strategies and Challenges

被引:1
|
作者
He, Mingrui [1 ]
Yan, Chang [1 ]
Li, Jianjun [1 ]
Suryawanshi, Mahesh P. [1 ]
Kim, Jinhyeok [2 ]
Green, Martin A. [1 ]
Hao, Xiaojing [1 ]
机构
[1] Univ New South Wales, Sch Photovolta & Renewable Energy Engn, Sydney, NSW 2052, Australia
[2] Chonnam Natl Univ, Dept Mat Sci & Engn, Gwangju 61186, South Korea
基金
澳大利亚研究理事会;
关键词
alkali doping; bandgap engineering; kesterite; thermal treatment; thin film solar cell; POST DEPOSITION TREATMENT; CU2ZNSN(S; SE)(4); THIN-FILMS; POWER CONVERSION EFFICIENCY; HEAT-BIAS SOAKING; BAND-GAP; POSTDEPOSITION TREATMENT; ORDER-DISORDER; CU2ZNSNS4; CU(IN; GA)SE-2; NA;
D O I
10.1002/advs.202004313
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Earth-abundant and environmentally benign kesterite Cu2ZnSn(S,Se)(4) (CZTSSe) is a promising alternative to its cousin chalcopyrite Cu(In,Ga)(S,Se)(2) (CIGS) for photovoltaic applications. However, the power conversion efficiency of CZTSSe solar cells has been stagnant at 12.6% for years, still far lower than that of CIGS (23.35%). In this report, insights into the latest cutting-edge strategies for further advance in the performance of kesterite solar cells is provided, particularly focusing on the postdeposition thermal treatment (for bare absorber, heterojunction, and completed device), alkali doping, and bandgap grading by engineering graded cation and/or anion alloying. These strategies, which have led to the step-change improvements in the power conversion efficiency of the counterpart CIGS solar cells, are also the most promising ones to achieve further efficiency breakthroughs for kesterite solar cells. Herein, the recent advances in kesterite solar cells along these pathways are reviewed, and more importantly, a comprehensive understanding of the underlying mechanisms is provided, and promising directions for the ongoing development of kesterite solar cells are proposed.
引用
收藏
页数:16
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