Overcoming photovoltage deficit via phenylthiourea derivatives for efficient printed perovskite solar cells with enhanced stabilityOA
Overcoming photovoltage deficit via phenylthiourea derivatives for efficient printed perovskite solar cells with enhanced stability
Jinlong Hu;Runxin Li;Qiongfeng Zhan;Jiajun Qin;Dadong Wen;Bing Yi;Huisheng Peng;Zhihang Tang
Academician Workstation for Smart Fiber Materials,Hunan Institute of Engineering,Xiangtan 411104,ChinaAcademician Workstation for Smart Fiber Materials,Hunan Institute of Engineering,Xiangtan 411104,ChinaAcademician Workstation for Smart Fiber Materials,Hunan Institute of Engineering,Xiangtan 411104,ChinaState Key Laboratory of Molecular Engineering of Polymers,Department of Macromolecular Science,and Laboratory of Advanced Materials,Fudan University,Shanghai 200438,ChinaAcademician Workstation for Smart Fiber Materials,Hunan Institute of Engineering,Xiangtan 411104,ChinaAcademician Workstation for Smart Fiber Materials,Hunan Institute of Engineering,Xiangtan 411104,ChinaState Key Laboratory of Molecular Engineering of Polymers,Department of Macromolecular Science,and Laboratory of Advanced Materials,Fudan University,Shanghai 200438,ChinaAcademician Workstation for Smart Fiber Materials,Hunan Institute of Engineering,Xiangtan 411104,China
phenylthioureadefect passivationprintablehigh efficiencyperovskite solar cell
phenylthioureadefect passivationprintablehigh efficiencyperovskite solar cell
《半导体学报(英文版)》 2026 (2)
110-118,9
This work was supported by the National Natural Sci-ence Foundation of China(Grant No.62205103),the Natural Science Foundation of Hunan Province(Grant No.2023JJ40216)and the Elite Youth Program by the Depart-ment of Education of Hunan Province(Grant No.24B0663).
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