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Regulating off-centering distortion maximizes photoluminescence in halide perovskites

Metal halide perovskites possess unique atomic and electronic configurations that endow them with high defect tolerance and enable high-performance photovoltaics and optoelectronics. Perovskite light-emitting diodes have achieved an external quantum efficiency of over 20%. Despite tremendous progres...

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Autores principales: Lü, Xujie, Stoumpos, Constantinos, Hu, Qingyang, Ma, Xuedan, Zhang, Dongzhou, Guo, Songhao, Hoffman, Justin, Bu, Kejun, Guo, Xiaofeng, Wang, Yingqi, Ji, Cheng, Chen, Haijie, Xu, Hongwu, Jia, Quanxi, Yang, Wenge, Kanatzidis, Mercouri G, Mao, Ho-Kwang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8433095/
https://www.ncbi.nlm.nih.gov/pubmed/34691729
http://dx.doi.org/10.1093/nsr/nwaa288
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author Lü, Xujie
Stoumpos, Constantinos
Hu, Qingyang
Ma, Xuedan
Zhang, Dongzhou
Guo, Songhao
Hoffman, Justin
Bu, Kejun
Guo, Xiaofeng
Wang, Yingqi
Ji, Cheng
Chen, Haijie
Xu, Hongwu
Jia, Quanxi
Yang, Wenge
Kanatzidis, Mercouri G
Mao, Ho-Kwang
author_facet Lü, Xujie
Stoumpos, Constantinos
Hu, Qingyang
Ma, Xuedan
Zhang, Dongzhou
Guo, Songhao
Hoffman, Justin
Bu, Kejun
Guo, Xiaofeng
Wang, Yingqi
Ji, Cheng
Chen, Haijie
Xu, Hongwu
Jia, Quanxi
Yang, Wenge
Kanatzidis, Mercouri G
Mao, Ho-Kwang
author_sort Lü, Xujie
collection PubMed
description Metal halide perovskites possess unique atomic and electronic configurations that endow them with high defect tolerance and enable high-performance photovoltaics and optoelectronics. Perovskite light-emitting diodes have achieved an external quantum efficiency of over 20%. Despite tremendous progress, fundamental questions remain, such as how structural distortion affects the optical properties. Addressing their relationships is considerably challenging due to the scarcity of effective diagnostic tools during structural and property tuning as well as the limited tunability achievable by conventional methods. Here, using pressure and chemical methods to regulate the metal off-centering distortion, we demonstrate the giant tunability of photoluminescence (PL) in both the intensity (>20 times) and wavelength (>180 nm/GPa) in the highly distorted halide perovskites [CH(3)NH(3)GeI(3), HC(NH(2))(2)GeI(3), and CsGeI(3)]. Using advanced in situ high-pressure probes and first-principles calculations, we quantitatively reveal a universal relationship whereby regulating the level of off-centering distortion towards 0.2 leads to the best PL performance in the halide perovskites. By applying this principle, intense PL can still be induced by substituting CH(3)NH(3)(+) with Cs(+) to control the distortion in (CH(3)NH(3))(1-x)Cs(x)GeI(3), where the chemical substitution plays a similar role as external pressure. The compression of a fully substituted sample of CsGeI(3) further tunes the distortion to the optimal value at 0.7 GPa, which maximizes the emission with a 10-fold enhancement. This work not only demonstrates a quantitative relationship between structural distortion and PL property of the halide perovskites but also illustrates the use of knowledge gained from high-pressure research to achieve the desired properties by ambient methods.
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spelling pubmed-84330952021-10-21 Regulating off-centering distortion maximizes photoluminescence in halide perovskites Lü, Xujie Stoumpos, Constantinos Hu, Qingyang Ma, Xuedan Zhang, Dongzhou Guo, Songhao Hoffman, Justin Bu, Kejun Guo, Xiaofeng Wang, Yingqi Ji, Cheng Chen, Haijie Xu, Hongwu Jia, Quanxi Yang, Wenge Kanatzidis, Mercouri G Mao, Ho-Kwang Natl Sci Rev Research Article Metal halide perovskites possess unique atomic and electronic configurations that endow them with high defect tolerance and enable high-performance photovoltaics and optoelectronics. Perovskite light-emitting diodes have achieved an external quantum efficiency of over 20%. Despite tremendous progress, fundamental questions remain, such as how structural distortion affects the optical properties. Addressing their relationships is considerably challenging due to the scarcity of effective diagnostic tools during structural and property tuning as well as the limited tunability achievable by conventional methods. Here, using pressure and chemical methods to regulate the metal off-centering distortion, we demonstrate the giant tunability of photoluminescence (PL) in both the intensity (>20 times) and wavelength (>180 nm/GPa) in the highly distorted halide perovskites [CH(3)NH(3)GeI(3), HC(NH(2))(2)GeI(3), and CsGeI(3)]. Using advanced in situ high-pressure probes and first-principles calculations, we quantitatively reveal a universal relationship whereby regulating the level of off-centering distortion towards 0.2 leads to the best PL performance in the halide perovskites. By applying this principle, intense PL can still be induced by substituting CH(3)NH(3)(+) with Cs(+) to control the distortion in (CH(3)NH(3))(1-x)Cs(x)GeI(3), where the chemical substitution plays a similar role as external pressure. The compression of a fully substituted sample of CsGeI(3) further tunes the distortion to the optimal value at 0.7 GPa, which maximizes the emission with a 10-fold enhancement. This work not only demonstrates a quantitative relationship between structural distortion and PL property of the halide perovskites but also illustrates the use of knowledge gained from high-pressure research to achieve the desired properties by ambient methods. Oxford University Press 2020-11-30 /pmc/articles/PMC8433095/ /pubmed/34691729 http://dx.doi.org/10.1093/nsr/nwaa288 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of China Science Publishing & Media Ltd. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lü, Xujie
Stoumpos, Constantinos
Hu, Qingyang
Ma, Xuedan
Zhang, Dongzhou
Guo, Songhao
Hoffman, Justin
Bu, Kejun
Guo, Xiaofeng
Wang, Yingqi
Ji, Cheng
Chen, Haijie
Xu, Hongwu
Jia, Quanxi
Yang, Wenge
Kanatzidis, Mercouri G
Mao, Ho-Kwang
Regulating off-centering distortion maximizes photoluminescence in halide perovskites
title Regulating off-centering distortion maximizes photoluminescence in halide perovskites
title_full Regulating off-centering distortion maximizes photoluminescence in halide perovskites
title_fullStr Regulating off-centering distortion maximizes photoluminescence in halide perovskites
title_full_unstemmed Regulating off-centering distortion maximizes photoluminescence in halide perovskites
title_short Regulating off-centering distortion maximizes photoluminescence in halide perovskites
title_sort regulating off-centering distortion maximizes photoluminescence in halide perovskites
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8433095/
https://www.ncbi.nlm.nih.gov/pubmed/34691729
http://dx.doi.org/10.1093/nsr/nwaa288
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