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Although C60is usually the electron transport layer (ETL) in inverted perovskite solar cells, its molecular nature of C60leads to weak interfaces that lead to non-ideal interfacial electronic and mechanical degradation. Here, we synthesized an ionic salt from C60, 4-(1',5′-dihydro-1'-methyl-2'H-[5,6] fullereno-C60-Ih-[1,9-c]pyrrol-2'-yl) phenylmethanaminium chloride (CPMAC), and used it as the electron shuttle in inverted PSCs. The CH2-NH3+head group in the CPMA cation improved the ETL interface and the ionic nature enhanced the packing, leading to ~3-fold increase in the interfacial toughness compared to C60. Using CPMAC, we obtained ~26% power conversion efficiencies (PCEs) with ~2% degradation after 2,100 hours of 1-sun operation at 65°C. For minimodules (four subcells, 6 centimeters square), we achieved the PCE of ~23% with <9% degradation after 2,200 hours of operation at 55°C.more » « less
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Tian, Chengbo; Betancourt-Solis, German; Nan, Ziang; Liu, Kaikai; Lin, Kebin; Lu, Jianxun; Xie, Liqiang; Echegoyen, Luis; Wei, Zhanhua (, Science Bulletin)null (Ed.)
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Cai, Xiuhong; Haider, Kamran; Lu, Jianxun; Radic, Slaven; Son, Chang Yun; Cui, Qiang; Gunner, M.R. (, Biochimica et Biophysica Acta (BBA) - Bioenergetics)