Imaging of the Atomic Structure of All-Inorganic Halide Perovskites
Author(s) -
Jérémy Hieulle,
Shulin Luo,
DaeYong Son,
Afshan Jamshaid,
Collin Stecker,
Zonghao Liu,
Guangren Na,
Dongwen Yang,
Robin Ohmann,
Luis K. Ono,
Lijun Zhang,
Yabing Qi
Publication year - 2020
Publication title -
the journal of physical chemistry letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.563
H-Index - 203
ISSN - 1948-7185
DOI - 10.1021/acs.jpclett.9b03738
Subject(s) - halide , perovskite (structure) , materials science , electronic structure , density functional theory , photoemission spectroscopy , chemical physics , scanning tunneling microscope , optoelectronics , nanotechnology , x ray photoelectron spectroscopy , chemistry , inorganic chemistry , crystallography , computational chemistry , chemical engineering , engineering
All-inorganic halide perovskites are promising materials for optoelectronic applications. The surface or interface structure of the perovskites plays a crucial role in determining the optoelectronic conversion efficiency, as well as the material stability. A thorough understanding of surface atomic structures of the inorganic perovskites and their contributions to their optoelectronic properties and stability is lacking. Here we show a scanning tunneling microscopy investigation on the atomic and electronic structure of CsPbBr 3 perovskite. Two different surface structures with a stripe and an armchair domain are identified, which originates from a complex interplay between Cs cations and Br anions. Our findings are further supported and correlated with density functional theory calculations and photoemission spectroscopy measurements. The stability evaluation of photovoltaic devices indicates a higher stability for CsPbBr 3 in comparison with MAPbBr 3 , which is closely related to the low volatility of Cs from the perovskite surface.
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