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Molecular Design and Operational Stability: Toward Stable 3D/2D Perovskite Interlayers
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Molecular Design and Operational Stability: Toward Stable 3D/2D Perovskite Interlayers

Sanghyun Paek, Cristina Roldán-Carmona, Kyung Taek Cho, Marius Franckevičius, Hobeom Kim, Hiroyuke Kanda, Nikita Drigo, Kun-Han Lin, Mingyuan Pei, Rokas Gegevičius, …
Advanced Science, 卷.7(19), 2001014
10/2020

摘要

3D perovskites, 2D perovskites bilayer perovskite solar cells passivation perfluorobenzylammonium iodide stable 3D/2D interfaces Medicine (miscellaneous) Chemical Engineering (all) Materials Science (all) Biochemistry Genetics and Molecular Biology (miscellaneous) Engineering (all) Physics and Astronomy (all)
Despite organic/inorganic lead halide perovskite solar cells becoming one of the most promising next-generation photovoltaic materials, instability under heat and light soaking remains unsolved. In this work, a highly hydrophobic cation, perfluorobenzylammonium iodide (5FBzAI), is designed and a 2D perovskite with reinforced intermolecular interactions is engineered, providing improved passivation at the interface that reduces charge recombination and enhances cell stability compared with benchmark 2D systems. Motivated by the strong halogen bond interaction, (5FBzAI) 2 PbI 4 used as a capping layer aligns in in-plane crystal orientation, inducing a reproducible increase of ≈60 mV in the V oc , a twofold improvement compared with its analogous monofluorinated phenylethylammonium iodide (PEAI) recently reported. This endows the system with high power conversion efficiency of 21.65% and extended operational stability after 1100 h of continuous illumination, outlining directions for future work.

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https://doi.org/10.1002/advs.202001014檢視
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