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Mobile defects as mediated states for charge-carrier trapping in metal halide perovskites quantum dots

Authors :
Xiao-Yi Liu
Wei-Ping Li
Yu Cui
Shao-Juan Li
Ran-Bo Yang
Zhi-Qing Li
Zi-Wu Wang
Source :
Applied Physics Letters. 122:132102
Publication Year :
2023
Publisher :
AIP Publishing, 2023.

Abstract

The migration motion of defects in metal halide perovskites quantum dots (MHPQDs) results in charge-carrier trapping become more complicated. We study two-step trapping mediated by mobile defects between the ground state of MHPQDs and a fixed-depth defect using a full-configuration defect method, where all possible trapping processes mediated by these mobile defects could be reproduced and the fastest channels among them are picked out. We find that these two-step trapping processes could keep more one order of magnitude faster than these direct ones as mobile defect with the appropriate localization strength, which implies that these indirect trapping should play the crucial rule to determine the non-radiative recombination losses. These results provide the significant explanation for studying non-radiation processes of carriers in the presence of the migration defects in recent experiments. Moreover, this model will be available to analyze some key performance related defects in electronic devices.<br />5 pages, 3 figures

Details

ISSN :
10773118 and 00036951
Volume :
122
Database :
OpenAIRE
Journal :
Applied Physics Letters
Accession number :
edsair.doi.dedup.....67363ef788ad644d8b72549022be2b88