路易斯酸
钙钛矿(结构)
化学
分子
合理设计
基础(拓扑)
结晶学
材料科学
纳米技术
催化作用
有机化学
数学分析
数学
作者
Chongwen Li,Xiaoming Wang,Enbing Bi,Fangyuan Jiang,So Min Park,You Li,Lei Chen,Zaiwei Wang,Lewei Zeng,Hao Chen,Yanjiang Liu,Corey R. Grice,Abasi Abudulimu,Jaehoon Chung,Yeming Xian,Tao Zhu,Huagui Lai,Bin Chen,Randy J. Ellingson,Fan Fu
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2023-02-16
卷期号:379 (6633): 690-694
被引量:355
标识
DOI:10.1126/science.ade3970
摘要
Lewis base molecules that bind undercoordinated lead atoms at interfaces and grain boundaries (GBs) are known to enhance the durability of metal halide perovskite solar cells (PSCs). Using density functional theory calculations, we found that phosphine-containing molecules have the strongest binding energy among members of a library of Lewis base molecules studied herein. Experimentally, we found that the best inverted PSC treated with 1,3-bis(diphenylphosphino)propane (DPPP), a diphosphine Lewis base that passivates, binds, and bridges interfaces and GBs, retained a power conversion efficiency (PCE) slightly higher than its initial PCE of ~23% after continuous operation under simulated AM1.5 illumination at the maximum power point and at ~40°C for >3500 hours. DPPP-treated devices showed a similar increase in PCE after being kept under open-circuit conditions at 85°C for >1500 hours.
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