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Self-trap-state-adjustable photoluminescence of quasi-one-dimensional RbPbI3 and Cs substitutional counterparts.

Authors :
Zhang, Bin-Bin
Wang, Fangbao
Xiao, Bao
Xu, Yadong
Gao, Kaige
Jie, Wanqi
Source :
Journal of Materials Chemistry C; 9/21/2020, Vol. 8 Issue 35, p12108-12112, 5p
Publication Year :
2020

Abstract

The "self-trap state" in low demensional halide perovskites usually induces highly efficient below-gap broadband luminescence, which makes them promising fluorescence emitting materials. However, the luminescence mechanism based on the "self-trap state" is not well understood as yet. In this work, solution-grown quasi-one-dimensional RbPbI<subscript>3</subscript> crystals reveal a large Stokes shift of ∼0.57 eV, wide and strong luminescence, and a linear power-dependent luminescence, whose luminescence mechanism was attributed to the formation of a "self-trap state" in RbPbI<subscript>3</subscript>. Furthermore, Cs substitutional counterpart (Rb<subscript>x</subscript>Cs<subscript>1−x</subscript>)PbI<subscript>3</subscript> crystals were found to adjust the distortions of the PbI<subscript>6</subscript> octahedron and the self-trap-state-induced luminescence properties. Our work provides a new strategy to control the "self-trap-state"-induced luminescence in low demensional halide perovskite materials. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20507526
Volume :
8
Issue :
35
Database :
Complementary Index
Journal :
Journal of Materials Chemistry C
Publication Type :
Academic Journal
Accession number :
145956802
Full Text :
https://doi.org/10.1039/d0tc02923h