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收藏Mechanism of improvement of the power conversion efficiency of Cu2ZnSn (S, Se)4 solar cells through changing Ag and Cd co-doping form from uniform to non-uniform通过将Ag和Cd共掺杂形式从均匀改变为非均匀,提高Cu2ZnSn(S,Se)4太阳能电池光电转换效率的机理
Li, Mengge; Ma, Ding; Yao, Bin; Li, Yongfeng; Ding, Zhanhui; Wang, Chunkai; Luan, Hongmei; Zhu, Chengjun
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收藏Improvement of the performance of Cu2ZnSn(S,Se)4 solar cells by synergistic effect of nonuniform Ag and In Co-doping通过非均匀Ag和In共掺杂的协同效应改善Cu2ZnSn(S,Se)4太阳能电池的性能
Zhu, Yan; Yao, Bin; Ding, Zhanhui; Shi, Liyuan; Wang, Chunkai; Ma, Ding; Li, Mengge; Liu, Yue; Ding, Ning; Sun, Yuting; Sun, Xiaofei; Li, Shaung
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收藏Enhancing CZTSSe solar cell efficiency to 11.07% with NaClO-induced Mo texturing for improved light management and carrier collection
Bai, Yunjie; He, Yu; Zhang, Yuhao; Liu, Chu; Qiao, Jingqi; Luan, Hongmei; Yang, Yanchun; Yao, Bin; Song, Yanping; Liu, Ruijian; Zhu, Chengjun
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收藏Enhancing the Efficiency of CZTSSe Solar Cells by Optimizing K-Doping Concentration and Selenization Temperature
Sun, Xiaofei; Li, Mengge; Yao, Bin; Li, Yongfeng; Ding, Zhanhui; Ma, Ding; Sun, Yuting; Zhu, Yan; Ding, Ning; Shi, Liyuan; Li, Shuang
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收藏Achieving high-efficiency Cu2ZnSn(S,Se)4 solar cells by Ag doping in Cu2ZnSn(S,Se)4 and substituting annealed In0.01Cd0.99S for CdS通过在Cu2ZnSn(S,Se)4中掺杂Ag,并用退火的In0.01Cd0.99S取代CdS,实现高效率Cu2ZnSn(S,Se)4太阳能电池
Ma, Ding; Li, Mengge; Yao, Bin; Li, Yongfeng; Ding, Zhanhui; Zhu, Chengjun; Zhang, Jiayong; Wang, Chunkai
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收藏High efficiency Sb and Ag double doped Cu2ZnSn(S, Se)4 thin film solar cells realized by post-heat treatment process of heterojunction
Wang, Tianyue; Sui, Yingrui; Miao, Chang; Cui, Yue; Wang, Zhanwu; Yang, Lili; Wang, Fengyou; Liu, Xiaoyan; Yao, Bin
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