Experimental Data _ TEM _Atomically Precise Ruddlesden–Popper Faults Induced Enhanced Emission in Ligand Stabilised Mixed Halide Perovskites
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https://repod.icm.edu.pl/citation?persistentId=doi:10.18150/W80R7Q
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Atomic-resolution imaging of Ruddlesden–Popper (RP) interfaces is challenging due to their concealment within perovskite nanocrystals (NCs) and the inherent limitations of conventional characterization techniques. In this study, distinctly oriented RP faults have been detected using double-Cs-corrected HAADF-STEM. We employ a simple yet reliable STEM approach to achieve atomically precise identification of Pb, Cs, Br, and I atoms and analyze their spatial atomic arrangements in a single NC. Additionally, dislocations caused by lattice mismatch at grain boundaries (GBs) are identified. Lattice strain in GBs and RPs was determined and quantified, revealing that neither of these planar defects introduce the deep trap levels. Therefore, in absence of Pb dangling bonds or Pb-Pb bonds in GBs and RPs plays a crucial role in stabilizing NCs and preventing ion migration.
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RepOD
创建时间:
2025-08-01



