Temperature-induced localized exciton dynamics in mixed lead–tin based CH3NH3Pb1−xSnxI3 perovskite materials
Of late, tremendous research efforts have been made to obtain Pb-free low-toxicity halide perovskites. In this regard, the Sn-based perovskite is the focus of attention because of its properties being similar to those of Pb. This paper explores the fundamentals of temperature-induced dynamics of loc...
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doaj-df65b8d241a4421397e734db744d01e52020-11-25T03:33:14ZengAIP Publishing LLCAIP Advances2158-32262020-06-01106065331065331-1210.1063/5.0007087Temperature-induced localized exciton dynamics in mixed lead–tin based CH3NH3Pb1−xSnxI3 perovskite materialsMd. Sherajul Islam0Biswajit Dey1Md. Masud Rana2A. S. M. Jannatul Islam3Jeongwon Park4Takayuki Makino5Department of Electrical and Electronic Engineering, Khulna University of Engineering & Technology, Khulna 9203, BangladeshDepartment of Electrical and Electronic Engineering, Khulna University of Engineering & Technology, Khulna 9203, BangladeshDepartment of Electrical and Electronic Engineering, Khulna University of Engineering & Technology, Khulna 9203, BangladeshDepartment of Electrical and Electronic Engineering, Khulna University of Engineering & Technology, Khulna 9203, BangladeshSchool of Electrical Engineering and Computer Science, University of Ottawa, Ottawa, Ontario K1N 6N5, CanadaGraduate School of Engineering, University of Fukui, Fukui 910-8507, JapanOf late, tremendous research efforts have been made to obtain Pb-free low-toxicity halide perovskites. In this regard, the Sn-based perovskite is the focus of attention because of its properties being similar to those of Pb. This paper explores the fundamentals of temperature-induced dynamics of localized excitons in mixed Pb–Sn based CH3NH3Pb1−xSnxI3 perovskite materials. A quantitative model using the Monte Carlo simulation of exciton hopping and relaxation is developed to compute the photoluminescence (PL) peak energy, in addition to the PL line-width over a temperature regime of 10 K–300 K. The temperature-induced changes in the bandgap expansion allow the quantitative fit of our calculation to the experimental results. We show that the PL peak energies in CH3NH3PbI3 and CH3NH3Pb1−xSnxI3 are blue shifted due to the fact that the excitons are localized with higher energy localized states with increasing temperatures. It has also been found that the amount of redshift in PL peak energy decreases with an increase in Sn contents while the full width at half maximum increases in increased Sn content perovskite materials. These results give a deep insight into the exciton dynamics in CH3NH3Pb1−xSnxI3, further aimed at efficient applications in optoelectronic devices.http://dx.doi.org/10.1063/5.0007087 |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Md. Sherajul Islam Biswajit Dey Md. Masud Rana A. S. M. Jannatul Islam Jeongwon Park Takayuki Makino |
spellingShingle |
Md. Sherajul Islam Biswajit Dey Md. Masud Rana A. S. M. Jannatul Islam Jeongwon Park Takayuki Makino Temperature-induced localized exciton dynamics in mixed lead–tin based CH3NH3Pb1−xSnxI3 perovskite materials AIP Advances |
author_facet |
Md. Sherajul Islam Biswajit Dey Md. Masud Rana A. S. M. Jannatul Islam Jeongwon Park Takayuki Makino |
author_sort |
Md. Sherajul Islam |
title |
Temperature-induced localized exciton dynamics in mixed lead–tin based CH3NH3Pb1−xSnxI3 perovskite materials |
title_short |
Temperature-induced localized exciton dynamics in mixed lead–tin based CH3NH3Pb1−xSnxI3 perovskite materials |
title_full |
Temperature-induced localized exciton dynamics in mixed lead–tin based CH3NH3Pb1−xSnxI3 perovskite materials |
title_fullStr |
Temperature-induced localized exciton dynamics in mixed lead–tin based CH3NH3Pb1−xSnxI3 perovskite materials |
title_full_unstemmed |
Temperature-induced localized exciton dynamics in mixed lead–tin based CH3NH3Pb1−xSnxI3 perovskite materials |
title_sort |
temperature-induced localized exciton dynamics in mixed lead–tin based ch3nh3pb1−xsnxi3 perovskite materials |
publisher |
AIP Publishing LLC |
series |
AIP Advances |
issn |
2158-3226 |
publishDate |
2020-06-01 |
description |
Of late, tremendous research efforts have been made to obtain Pb-free low-toxicity halide perovskites. In this regard, the Sn-based perovskite is the focus of attention because of its properties being similar to those of Pb. This paper explores the fundamentals of temperature-induced dynamics of localized excitons in mixed Pb–Sn based CH3NH3Pb1−xSnxI3 perovskite materials. A quantitative model using the Monte Carlo simulation of exciton hopping and relaxation is developed to compute the photoluminescence (PL) peak energy, in addition to the PL line-width over a temperature regime of 10 K–300 K. The temperature-induced changes in the bandgap expansion allow the quantitative fit of our calculation to the experimental results. We show that the PL peak energies in CH3NH3PbI3 and CH3NH3Pb1−xSnxI3 are blue shifted due to the fact that the excitons are localized with higher energy localized states with increasing temperatures. It has also been found that the amount of redshift in PL peak energy decreases with an increase in Sn contents while the full width at half maximum increases in increased Sn content perovskite materials. These results give a deep insight into the exciton dynamics in CH3NH3Pb1−xSnxI3, further aimed at efficient applications in optoelectronic devices. |
url |
http://dx.doi.org/10.1063/5.0007087 |
work_keys_str_mv |
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