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作 者:Shuaishuai Guo Kaikai Liu Li Rao Xiaotian Hu Yiwang Chen
机构地区:[1]School of Physics and Materials,Nanchang University,999 Xuefu Avenue,Nanchang,Jiangxi 330031,China [2]College of Chemistry and Chemical Engineering/Institute of Polymers and Energy Chemistry,Nanchang University,999 Xuefu Avenue Nanchang,Jiangxi330031,China [3]Peking University Yangtze Delta Institute of Optoelectronics,Nantong,Jiangsu 226010,China [4]National Engineering Research Centerfor Carbohydrate Synthesis/Key Lab of Fluorine and Silicon for Energy Materials and Chemistry of Ministryof Education,Jiangxi Normal University,99 Ziyang Venue,Nanchang,Jiangxi 330022,China
出 处:《Chinese Journal of Chemistry》2023年第5期599-617,共19页中国化学(英文版)
基 金:This research was funded by the National Natural Science Foundation of China(NSFC)(51833004,22005131,52173169 and U20A20128);the Natural Science Foundation of Jiangxi Province(20212BAB214055).
摘 要:The preparation of perovskite solar cells(PsCs)in the air environment has attracted the attention of numerous experimenters due to its low preparation cost and the possibility of commercialization.Although the power conversion efficiency(PCE)of PSCs has increased rapidly and exceeded 25%,which is comparable to commercial polysilicon solar cells,most certified or reported high-efficiency perovskite solar cells are still confined to glove boxes or relatively small active areas in the air environment due to moisture,oxygen,high temperature,and ultraviolet(UV)factors.In this review.
关 键 词:Perovskite solar cells Degradation mechanism Fabrication in the air Stability strategy Large-area fabrication Thin films PHOTOOXIDATION
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