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Abstract

Abstract Ion exchange is classified as a reaction that may be performed among nanocrystals. Here, we discovered that methylammonium lead bromide macroscale perovskite single crystals may exchange ions with the environment while maintaining their original morphology. Iodide replaced bromide and was detected even in the very center of a previously pure macroscale MAPbBr 3 single crystal. Additionally, the entrance of chloride into the crystal is energetically favorable and most bromides were exchanged, yet kinetic factors hindered Cs + entry and Pb 2+ by Sn 2+ substitution. Furthermore, grinding different single crystals together revealed swift I/Br exchange. Clear differences in comparison with nanomaterials, along with density functional theory calculations, shed light on the nature of ion‐exchange reactions in perovskite single crystals. This work provides first evidence of these halide exchange reactions in macroscale perovskite single crystals. These results offer a new perspective on ion‐exchange reaction and pave a path toward synthesis of inhomogeneous single crystals. image

Keywords

HalidePerovskite (structure)IodideSingle crystalBromideMaterials scienceIon exchangeIonCrystal (programming language)NanocrystalCrystallographyInorganic chemistryChemical physicsChemistryNanotechnologyOrganic chemistry

Identifiers

Journal
EcoMat
Year
2020