White light emission in 0D halide perovskite [(CH3)3S]2SnCl6·H2O crystals through variation of doping ns2 ions

Abstract With the rapid development of white LEDs, the research of new and efficient white light emitting materials has attracted increasing attention. Zero dimensional (0D) organic–inorganic hybrid metal halide perovskites with superior luminescent property are promising candidates for LED applicat...

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Main Authors: Yitong Lin, Yu Zhong, Yangpeng Lin, Jiawei Lin, Lei Pang, Zhilong Zhang, Yi Zhao, Xiao-Ying Huang, Ke-Zhao Du
Format: Article
Language:English
Published: Springer & Higher Education Press 2024-02-01
Series:Frontiers of Optoelectronics
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Online Access:https://doi.org/10.1007/s12200-024-00109-3
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author Yitong Lin
Yu Zhong
Yangpeng Lin
Jiawei Lin
Lei Pang
Zhilong Zhang
Yi Zhao
Xiao-Ying Huang
Ke-Zhao Du
author_facet Yitong Lin
Yu Zhong
Yangpeng Lin
Jiawei Lin
Lei Pang
Zhilong Zhang
Yi Zhao
Xiao-Ying Huang
Ke-Zhao Du
author_sort Yitong Lin
collection DOAJ
description Abstract With the rapid development of white LEDs, the research of new and efficient white light emitting materials has attracted increasing attention. Zero dimensional (0D) organic–inorganic hybrid metal halide perovskites with superior luminescent property are promising candidates for LED application, due to their abundant and tailorable structure. Herein, [(CH3)3S]2SnCl6·H2O is synthesized as a host for dopant ions Bi3+ and Sb3+. The Sb3+ doped, or Bi3+/Sb3+ co-doped, [(CH3)3S]2SnCl6·H2O has a tunable optical emission spectrum by means of varying dopant ratio and excitation wavelength. As a result, we can achieve single-phase materials suitable for emission ranging from cold white light to warm white light. The intrinsic mechanism is examined in this work, to clarify the dopant effect on the optical properties. The high stability of title crystalline material, against water, oxygen and heat, makes it promising for further application. Graphical Abstract
format Article
id doaj-art-8c26449022c847b6854c923a94d6870c
institution Kabale University
issn 2095-2767
language English
publishDate 2024-02-01
publisher Springer & Higher Education Press
record_format Article
series Frontiers of Optoelectronics
spelling doaj-art-8c26449022c847b6854c923a94d6870c2024-11-17T12:09:43ZengSpringer & Higher Education PressFrontiers of Optoelectronics2095-27672024-02-0117111010.1007/s12200-024-00109-3White light emission in 0D halide perovskite [(CH3)3S]2SnCl6·H2O crystals through variation of doping ns2 ionsYitong Lin0Yu Zhong1Yangpeng Lin2Jiawei Lin3Lei Pang4Zhilong Zhang5Yi Zhao6Xiao-Ying Huang7Ke-Zhao Du8Fujian Provincial Key Laboratory of Advanced Materials Oriented Chemical Engineering, Collage of Chemistry and Material Science, Fujian Normal UniversityFujian Provincial Key Laboratory of Advanced Materials Oriented Chemical Engineering, Collage of Chemistry and Material Science, Fujian Normal UniversityFujian Provincial Key Laboratory of Advanced Materials Oriented Chemical Engineering, Collage of Chemistry and Material Science, Fujian Normal UniversityFujian Provincial Key Laboratory of Advanced Materials Oriented Chemical Engineering, Collage of Chemistry and Material Science, Fujian Normal UniversityFujian Provincial Key Laboratory of Advanced Materials Oriented Chemical Engineering, Collage of Chemistry and Material Science, Fujian Normal UniversityFujian Provincial Key Laboratory of Advanced Materials Oriented Chemical Engineering, Collage of Chemistry and Material Science, Fujian Normal UniversityStrait Institute of Flexible Electronics (SIFE, Future Technologies), Fujian Normal University and Strait Laboratory of Flexible Electronics (SLoFE)State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of SciencesFujian Provincial Key Laboratory of Advanced Materials Oriented Chemical Engineering, Collage of Chemistry and Material Science, Fujian Normal UniversityAbstract With the rapid development of white LEDs, the research of new and efficient white light emitting materials has attracted increasing attention. Zero dimensional (0D) organic–inorganic hybrid metal halide perovskites with superior luminescent property are promising candidates for LED application, due to their abundant and tailorable structure. Herein, [(CH3)3S]2SnCl6·H2O is synthesized as a host for dopant ions Bi3+ and Sb3+. The Sb3+ doped, or Bi3+/Sb3+ co-doped, [(CH3)3S]2SnCl6·H2O has a tunable optical emission spectrum by means of varying dopant ratio and excitation wavelength. As a result, we can achieve single-phase materials suitable for emission ranging from cold white light to warm white light. The intrinsic mechanism is examined in this work, to clarify the dopant effect on the optical properties. The high stability of title crystalline material, against water, oxygen and heat, makes it promising for further application. Graphical Abstracthttps://doi.org/10.1007/s12200-024-00109-30DMetal halideWhite lightPerovskiteIons dopingExcitation dependent
spellingShingle Yitong Lin
Yu Zhong
Yangpeng Lin
Jiawei Lin
Lei Pang
Zhilong Zhang
Yi Zhao
Xiao-Ying Huang
Ke-Zhao Du
White light emission in 0D halide perovskite [(CH3)3S]2SnCl6·H2O crystals through variation of doping ns2 ions
Frontiers of Optoelectronics
0D
Metal halide
White light
Perovskite
Ions doping
Excitation dependent
title White light emission in 0D halide perovskite [(CH3)3S]2SnCl6·H2O crystals through variation of doping ns2 ions
title_full White light emission in 0D halide perovskite [(CH3)3S]2SnCl6·H2O crystals through variation of doping ns2 ions
title_fullStr White light emission in 0D halide perovskite [(CH3)3S]2SnCl6·H2O crystals through variation of doping ns2 ions
title_full_unstemmed White light emission in 0D halide perovskite [(CH3)3S]2SnCl6·H2O crystals through variation of doping ns2 ions
title_short White light emission in 0D halide perovskite [(CH3)3S]2SnCl6·H2O crystals through variation of doping ns2 ions
title_sort white light emission in 0d halide perovskite ch3 3s 2sncl6·h2o crystals through variation of doping ns2 ions
topic 0D
Metal halide
White light
Perovskite
Ions doping
Excitation dependent
url https://doi.org/10.1007/s12200-024-00109-3
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