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Simultaneous achievement of defect passivation and carrier transport promotion by using emerald salt for methylammonium-free perovskite solar cells.
Fan, Zhenghui; Yin, Yuan; Cai, Bing; Ma, Qingshan; Liu, Qianlong; Liu, Xinhang; Zhang, Wen-Hua.
Afiliação
  • Fan Z; Institute of Chemical Materials, China Academy of Engineering Physics 596 Yinhe Road Chengdu 610200 China bingcai@caep.cn qiehahah@163.com whzhang@caep.cn.
  • Yin Y; College of Physics and Optoelectronic Technology, Baoji University of Arts and Sciences Baoji 721016 China.
  • Cai B; Institute of Chemical Materials, China Academy of Engineering Physics 596 Yinhe Road Chengdu 610200 China bingcai@caep.cn qiehahah@163.com whzhang@caep.cn.
  • Ma Q; Institute of Chemical Materials, China Academy of Engineering Physics 596 Yinhe Road Chengdu 610200 China bingcai@caep.cn qiehahah@163.com whzhang@caep.cn.
  • Liu Q; Institute of Chemical Materials, China Academy of Engineering Physics 596 Yinhe Road Chengdu 610200 China bingcai@caep.cn qiehahah@163.com whzhang@caep.cn.
  • Liu X; Institute of Chemical Materials, China Academy of Engineering Physics 596 Yinhe Road Chengdu 610200 China bingcai@caep.cn qiehahah@163.com whzhang@caep.cn.
  • Yinhua Lv; Institute of Chemical Materials, China Academy of Engineering Physics 596 Yinhe Road Chengdu 610200 China bingcai@caep.cn qiehahah@163.com whzhang@caep.cn.
  • Zhang WH; Institute of Chemical Materials, China Academy of Engineering Physics 596 Yinhe Road Chengdu 610200 China bingcai@caep.cn qiehahah@163.com whzhang@caep.cn.
Chem Sci ; 13(35): 10512-10522, 2022 Sep 14.
Article em En | MEDLINE | ID: mdl-36277621
Defect passivation along with promoted charge transport is potentially an effective but seldom exploited strategy for high-performance perovskite solar cells (PSCs). Herein, the in situ defect passivation and carrier transport improvement are simultaneously realized by introducing a conductive polymer (i.e., emerald salt, ES) into the precursor solution of methylammonium (MA)-free perovskites. The interaction between ES and uncoordinated Pb2+ reduces defect density to suppress the non-radiative recombination. Moreover, ES can act as a "carrier driver" to promote the carrier transport due to its conductive feature, resulting in efficient PSC devices with a decent power conversion efficiency (PCE) of 23.0%, which is among the most efficient MA-free PSCs. The ES-based unencapsulated devices show superior stability, retaining 89.1% and 83.8% of their initial PCEs when subjected to 35 ± 5% relative humidity (RH) storage and 85 °C thermal aging for 1000 h, respectively. To further assess the large-area compatibility of our strategy, 5 × 5 cm2 mini modules were also fabricated, delivering an impressive efficiency of 19.3%. This work sheds light on the importance of conductive additives in boosting cell performance by playing multiple roles in passivating defects, retarding the moisture invasion, and enhancing and balancing charge transport.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article