Optimization of Stable Quasi-Cubic FAxMA1-xPbI3 Perovskite Structure for Solar Cells with Efficiency beyond 20%

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Abstract

Complex compositional engineering of mixed halides/mixed cations perovskites has recently fostered a rapid progress in perovskite solar cell technology. Here we demonstrate that when 10% of formamidinium (FA+) is simply added into methylammonium lead iodide (MAPbI3) a highly crystalline and compositionally uniform perovskite is formed, self-organizing into a stable "quasi-cubic" phase at room temperature. We reached power conversion efficiency of over 20.2%, the highest value reported to date for FAxMA1-xPbI3 perovskite.

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Zhang, Y., Grancini, G., Feng, Y., Asiri, A. M., & Nazeeruddin, M. K. (2017). Optimization of Stable Quasi-Cubic FAxMA1-xPbI3 Perovskite Structure for Solar Cells with Efficiency beyond 20%. ACS Energy Letters, 2(4), 802–806. https://doi.org/10.1021/acsenergylett.7b00112

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