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Get Free AccessMetal halide perovskites have shown exceptional potential in converting solar energy to electric power in photovoltaics, yet their application is hampered by limited operational stability. This stimulated the development of hybrid layered (two-dimensional, 2D) halide perovskites based on hydrophobic organic spacers, templating perovskite slabs, as a more stable alternative. However, conventional organic spacer cations are electronically insulating, resulting in charge confinement within the inorganic slabs, thus limiting their functionality. This can be ameliorated by extending the π-conjugation of the spacer cations. We demonstrate the capacity to access Ruddlesden-Popper and Dion-Jacobson 2D perovskites incorporating for the first time aryl-acetylene-based (4-ethynylphenyl)methylammonium (BMAA) and buta-1,3-diyne-1,4-diylbis(4,1-phenylene)dimethylammonium (BDAA) spacers, respectively. We assess their unique opto(electro)ionic characteristics by a combination of techniques and apply them in mixed-dimensional perovskite solar cells that show superior device performances with a power conversion efficiency of up to 23 % and higher operational stability, opening the way for multifunctionality in layered hybrid materials and their application.
Ghewa AlSabeh, Vladislav Sláma, Ming Ren, Masaud Almalki, Lukas Pfeifer, Dominik J. Kubicki, Paul Zimmermann, Alexander Hinderhofer, Fabiola Faini, Davide Moia, Mostafa Othman, Felix T. Eickemeyer, Virginia Carnevali, Nikolaos Lempesis, Andrea Vezzosi, Fatemeh Ansari, Frank Schreiber, Joachim Maier, Christian M. Wolff, Aïcha Hessler‐Wyser, Christophe Ballif, Giulia Grancini, Ursula Röthlisberger, Michael Graetzel, Jovana V. Milić (2025). Aryl‐Acetylene Layered Hybrid Perovskites in Photovoltaics. , 64(9), DOI: https://doi.org/10.1002/anie.202417432.
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Type
Article
Year
2025
Authors
25
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.1002/anie.202417432
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