串联
钙钛矿(结构)
卤化物
材料科学
铅(地质)
化学工程
化学
无机化学
地质学
结晶学
复合材料
地貌学
工程类
作者
David P. McMeekin,Golnaz Sadoughi,Waqaas Rehman,Giles E. Eperon,Michael Saliba,Maximilian T. Hörantner,Amir A. Haghighirad,Nobuya Sakai,Lars Korte,B. Rech,Michael B. Johnston,Laura M. Herz,Henry J. Snaith
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2016-01-07
卷期号:351 (6269): 151-155
被引量:2761
标识
DOI:10.1126/science.aad5845
摘要
Metal halide perovskite photovoltaic cells could potentially boost the efficiency of commercial silicon photovoltaic modules from ∼20 toward 30% when used in tandem architectures. An optimum perovskite cell optical band gap of ~1.75 electron volts (eV) can be achieved by varying halide composition, but to date, such materials have had poor photostability and thermal stability. Here we present a highly crystalline and compositionally photostable material, [HC(NH2)2](0.83)Cs(0.17)Pb(I(0.6)Br(0.4))3, with an optical band gap of ~1.74 eV, and we fabricated perovskite cells that reached open-circuit voltages of 1.2 volts and power conversion efficiency of over 17% on small areas and 14.7% on 0.715 cm(2) cells. By combining these perovskite cells with a 19%-efficient silicon cell, we demonstrated the feasibility of achieving >25%-efficient four-terminal tandem cells.
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