A piperidinium salt stabilizes efficient metal-halide perovskite solar cells
作者:Yen‐Hung Lin, Nobuya Sakai, Peimei Da, Jiaying Wu, H. Sansom, A. Ramadan, Suhas Mahesh, Junliang Liu, Robert D. J. Oliver, Jongchul Lim, Lee Aspitarte, Kshama Sharma, P. Madhu, A. Morales-Vilches, P. Nayak, P. Nayak, Sai Bai, Feng Gao, C. Grovenor, M. Johnston, John G. Labram, J. Durrant, J. Durrant, J. Ball, B. Wenger, B. Stannowski, H. Snaith · 发表于:Science · 年份:2020 · DOI:10.1126/science.aba1628 · 被引用次数:514 · 研究领域:Materials Science、Medicine
Stable perovskites with ionic salts Ionic liquids have been shown to stabilize organic-inorganic perovskite solar cells with metal oxide carrier-transport layers, but they are incompatible with more readily processible organic analogs. Lin et al. found that an ionic solid, a piperidinium salt, enhanced the efficiency of positive-intrinsic-negative layered perovskite solar cells with organic electron and hole extraction layers. Aggressive aging testing showed that this additive retarded segregation into impurity phases and pinhole formation in the perovskite layer. Science, this issue p. 96 An ionic compound additive improved perovskite solar cell longevity by inhibiting the generation of degradation products. Longevity has been a long-standing concern for hybrid perovskite photovoltaics. We demonstrate high-resilience positive-intrinsic-negative perovskite solar cells by incorporating a piperidinium-based ionic compound into the formamidinium-cesium lead-trihalide perovskite absorber. With the bandgap tuned to be well suited for perovskite-on-silicon tandem cells, this piperidinium additive enhances the open-circuit voltage and cell efficiency. This additive also retards compositional segregation into impurity phases and pinhole formation in the perovskite absorber layer during aggressive aging. Under full-spectrum simulated sunlight in ambient atmosphere, our unencapsulated and encapsulated cells retain 80 and 95% of their peak and post-burn-in efficiencies for 1010 and 1200...