锌黄锡矿
Boosting(机器学习)
材料科学
扩展(谓词逻辑)
相(物质)
硒化铜铟镓太阳电池
光伏系统
光电子学
化学工程
化学
太阳能电池
计算机科学
捷克先令
工程类
有机化学
程序设计语言
机器学习
电气工程
作者
Ge Yao,Zucheng Wu,Dongxing Kou,Bingyin Kong,Hao Wei,Zhipeng Shao,Wenhui Zhou,Zhengji Zhou,Shengjie Yuan,Yafang Qi,Litao Han,Guanglei Cui,Shichen Wu
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2025-05-14
卷期号:10 (6): 2761-2769
被引量:19
标识
DOI:10.1021/acsenergylett.5c01007
摘要
The presence of secondary phases and a high concentration of deep-level defects led to a large open-circuit voltage deficit (Voc,deficit) for Cu2ZnSn(S,Se)4 (CZTSSe) solar cells. Here we regulate the phase evolution from CZTS to CZTSSe in the initial selenization stage to obtain high-quality absorber with minimal defects and secondary phases. By adding the bidentate chelation structured mercaptopropionic acid (MPA) into the air-prepared 2-methoxyethanol (MOE) precursor solution, large CZTS colloidal particles and dense precursor films are prepared. During the initial selenization stage, the reduced nucleation sites can decrease selenium–molecule interactions and extend the phase evolution process. This extension makes the heterogeneous nucleation more controllable, fostering uniform element distribution and enhanced growth of permeating the large-grain layer. These benefits demonstrate a substantial increase in device efficiency up to 14.99% (certified at 14.38%) with a reduced Voc,deficit of 281.18 mV. The findings are of great significance for further efficiency leaps of kesterite solar cells.
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