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Polaronic charge carrier-lattice interactions in lead halide perovskites

Cited 18 time in Web of Science Cited 17 time in Scopus
Authors

Wolf, Christoph; Cho, Himchan; Kim, Young-Hoon; Lee, Tae-Woo

Issue Date
2017-10
Publisher
Wiley - V C H Verlag GmbbH & Co.
Citation
ChemSusChem, Vol.10 No.19, pp.3705-3711
Abstract
Almost ten years after the renaissance of the popular perovskite-type semiconductors based on lead salts with the general formula AMX(3) (A = organic or inorganic cation; M = divalent metal; X = halide), many facets of photophysics continue to puzzle researchers. In this Minireview, light is shed on the low mobilities of charge carriers in lead halide perovskites with special focus on the lattice properties at non-zero temperature. The polar and soft lattice leads to pronounced electronphonon coupling, limiting carrier mobility and retarding recombination. We propose that the proper picture of excited charge carriers at temperature ranges that are relevant for device operations is that of a polaron, with Frohlich coupling constants between 1
ISSN
1864-5631
URI
https://hdl.handle.net/10371/164492
DOI
https://doi.org/10.1002/cssc.201701284
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