作者
Jiang Liu,Michele De Bastiani,Erkan Aydın,George T. Harrison,Yajun Gao,Rakesh R. Pradhan,Mathan K. Eswaran,Mukunda Mandal,Wenbo Yan,Akmaral Seitkhan,Maxime Babics,Anand S. Subbiah,Esma Ugur,Fuzong Xu,Lujia Xu,Mingcong Wang,Atteq ur Rehman,Arsalan Razzaq,Jingxuan Kang,Randi Azmi,Ahmed Ali Said,Furkan H. Isikgor,Thomas G. Allen,Denis Andrienko,Udo Schwingenschlögl,Frédéric Laquai,Stefaan De Wolf
摘要
The performance of perovskite solar cells with inverted polarity (p-i-n) is still limited by recombination at their electron extraction interface, which also lowers the power conversion efficiency (PCE) of p-i-n perovskite-silicon tandem solar cells. A MgF x interlayer with thickness of ~1 nanometer at the perovskite/C 60 interface favorably adjusts the surface energy of the perovskite layer through thermal evaporation, which facilitates efficient electron extraction and displaces C 60 from the perovskite surface to mitigate nonradiative recombination. These effects enable a champion open-circuit voltage of 1.92 volts, an improved fill factor of 80.7%, and an independently certified stabilized PCE of 29.3% for a monolithic perovskite-silicon tandem solar cell ~1 square centimeter in area. The tandem retained ~95% of its initial performance after damp-heat testing (85°C at 85% relative humidity) for >1000 hours.