| Literature DB >> 29024076 |
Junwei Xu1,2, Wenxiao Huang1,2, Peiyun Li2, Drew R Onken2, Chaochao Dun1,2, Yang Guo1,3,4, Kamil B Ucer2, Chang Lu5, Hongzhi Wang3,4, Scott M Geyer5, Richard T Williams1,2, David L Carroll1,2.
Abstract
Solution-grown films of CsPbBr3 nanocrystals imbedded in Cs4 PbBr6 are incorporated as the recombination layer in light-emitting diode (LED) structures. The kinetics at high carrier density of pure (extended) CsPbBr3 and the nanoinclusion composite are measured and analyzed, indicating second-order kinetics in extended and mainly first-order kinetics in the confined CsPbBr3 , respectively. Analysis of absorption strength of this all-perovskite, all-inorganic imbedded nanocrystal composite relative to pure CsPbBr3 indicates enhanced oscillator strength consistent with earlier published attribution of the sub-nanosecond exciton radiative lifetime in nanoprecipitates of CsPbBr3 in melt-grown CsBr host crystals and CsPbBr3 evaporated films.Entities:
Keywords: excitonic kinetics; lead halide perovskites; light-emitting diodes; nanoinclusions; oscillator strength
Year: 2017 PMID: 29024076 DOI: 10.1002/adma.201703703
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849