Low trap-state density and long carrier diffusion in organolead trihalide perovskite single crystals

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Abstract

The fundamental properties and ultimate performance limits of organolead trihalide MAPbX3(MA = CH3NH3+; X = Br- or I- ) perovskites remain obscured by extensive disorder in polycrystalline MAPbX3 films. We report an antisolvent vapor-assisted crystallization approach that enables us to create sizable crack-free MAPbX3 single crystals with volumes exceeding 100 cubic millimeters. These large single crystals enabled a detailed characterization of their optical and charge transport characteristics.We observed exceptionally low trap-state densities on the order of 109 to 1010 per cubic centimeter in MAPbX3 single crystals (comparable to the best photovoltaic-quality silicon) and charge carrier diffusion lengths exceeding 10 micrometers. These results were validated with density functional theory calculations.

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Shi, D., Adinolfi, V., Comin, R., Yuan, M., Alarousu, E., Buin, A., … Bakr, O. M. (2015). Low trap-state density and long carrier diffusion in organolead trihalide perovskite single crystals. Science, 347(6221), 519–522. https://doi.org/10.1126/science.aaa2725

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