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Lithium‐Ion Endohedral Fullerene (Li+@C60) Dopants in Stable Perovskite Solar Cells Induce Instant Doping and Anti‐Oxidation
Authors:Dr Il Jeon  Dr Hiroshi Ueno  Seungju Seo  Dr Kerttu Aitola  Ryosuke Nishikubo  Prof Akinori Saeki  Dr Hiroshi Okada  Prof Gerrit Boschloo  Prof Shigeo Maruyama  Prof Yutaka Matsuo
Institution:1. Department of Mechanical Engineering, The University of Tokyo, Bunkyo-ku, Tokyo, Japan;2. School of Chemistry, Northeast Normal University, Jilin, P. R. China;3. ?ngstr?m Laboratory Physical Chemistry, Uppsala University, Uppsala, Sweden;4. Department of Applied Chemistry, Osaka University, Osaka, Japan;5. Research Institute for Energy Conservation, National Institute of Advanced Industrial Science and Technology, Tsukuba, Japan
Abstract:Herein, we report use of Li+@C60]TFSI? as a dopant for spiro‐MeOTAD in lead halide perovskite solar cells. This approach gave an air stability nearly 10‐fold that of conventional devices using Li+TFSI?. Such high stability is attributed to the hydrophobic nature of Li+@C60]TFSI? repelling moisture and absorbing intruding oxygen, thereby protecting the perovskite device from degradation. Furthermore, Li+@C60]TFSI? could oxidize spiro‐MeOTAD without the need for oxygen. The encapsulated devices exhibited outstanding air stability for more than 1000 h while illuminated under ambient conditions.
Keywords:air stability  doping  fullerenes  lithium  perovskite solar cells
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