Cargando…

Photophysical studies for Cu(i)-based halides: broad excitation bands and highly efficient single-component warm white-light-emitting diodes

Designing and synthesizing cuprous halide phosphors unifying efficient low-energy emission and a broad excitation band is still a great challenge. Herein, by rational component design, three novel Cu(i)-based metal halides, DPCu(4)X(6) [DP = (C(6)H(10)N(2))(4)(H(2)PO(2))(6); X = Cl, Br, I], were syn...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhou, Shuigen, Chen, Yihao, Li, Kailei, Liu, Xiaowei, Zhang, Ting, Shen, Wei, Li, Ming, Zhou, Lei, He, Rongxing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10208036/
https://www.ncbi.nlm.nih.gov/pubmed/37234888
http://dx.doi.org/10.1039/d3sc01762a
_version_ 1785046585197985792
author Zhou, Shuigen
Chen, Yihao
Li, Kailei
Liu, Xiaowei
Zhang, Ting
Shen, Wei
Li, Ming
Zhou, Lei
He, Rongxing
author_facet Zhou, Shuigen
Chen, Yihao
Li, Kailei
Liu, Xiaowei
Zhang, Ting
Shen, Wei
Li, Ming
Zhou, Lei
He, Rongxing
author_sort Zhou, Shuigen
collection PubMed
description Designing and synthesizing cuprous halide phosphors unifying efficient low-energy emission and a broad excitation band is still a great challenge. Herein, by rational component design, three novel Cu(i)-based metal halides, DPCu(4)X(6) [DP = (C(6)H(10)N(2))(4)(H(2)PO(2))(6); X = Cl, Br, I], were synthesized by reacting p-phenylenediamine with cuprous halide (CuX), and they show similar structures, consisting of isolated [Cu(4)X(6)](2−) units separated by organic layers. Photophysical studies uncover that the highly localized excitons and rigid environment give rise to highly efficient yellow-orange photoluminescence in all compounds with the excitation band spanning from 240 to 450 nm. The bright PL in DPCu(4)X(6) (X = Cl, Br) originates from self-trapped excitons due to the strong electron–phonon coupling. Intriguingly, DPCu(4)I(6) features a dual-band emissive characteristic, attributed to the synergistic effect of halide/metal-to-ligand charge-transfer (X/MLCT) and triplet cluster-centered ((3)CC) excited states. Benefiting from the broadband excitation, a high-performance white-light emitting diode (WLED) with a high color rendering index of 85.1 was achieved using single-component DPCu(4)I(6) phosphor. This work not only unveils the role of halogens in the photophysical processes of cuprous halides, but also provides new design principles for high-performance single-component WLEDs.
format Online
Article
Text
id pubmed-10208036
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-102080362023-05-25 Photophysical studies for Cu(i)-based halides: broad excitation bands and highly efficient single-component warm white-light-emitting diodes Zhou, Shuigen Chen, Yihao Li, Kailei Liu, Xiaowei Zhang, Ting Shen, Wei Li, Ming Zhou, Lei He, Rongxing Chem Sci Chemistry Designing and synthesizing cuprous halide phosphors unifying efficient low-energy emission and a broad excitation band is still a great challenge. Herein, by rational component design, three novel Cu(i)-based metal halides, DPCu(4)X(6) [DP = (C(6)H(10)N(2))(4)(H(2)PO(2))(6); X = Cl, Br, I], were synthesized by reacting p-phenylenediamine with cuprous halide (CuX), and they show similar structures, consisting of isolated [Cu(4)X(6)](2−) units separated by organic layers. Photophysical studies uncover that the highly localized excitons and rigid environment give rise to highly efficient yellow-orange photoluminescence in all compounds with the excitation band spanning from 240 to 450 nm. The bright PL in DPCu(4)X(6) (X = Cl, Br) originates from self-trapped excitons due to the strong electron–phonon coupling. Intriguingly, DPCu(4)I(6) features a dual-band emissive characteristic, attributed to the synergistic effect of halide/metal-to-ligand charge-transfer (X/MLCT) and triplet cluster-centered ((3)CC) excited states. Benefiting from the broadband excitation, a high-performance white-light emitting diode (WLED) with a high color rendering index of 85.1 was achieved using single-component DPCu(4)I(6) phosphor. This work not only unveils the role of halogens in the photophysical processes of cuprous halides, but also provides new design principles for high-performance single-component WLEDs. The Royal Society of Chemistry 2023-05-02 /pmc/articles/PMC10208036/ /pubmed/37234888 http://dx.doi.org/10.1039/d3sc01762a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhou, Shuigen
Chen, Yihao
Li, Kailei
Liu, Xiaowei
Zhang, Ting
Shen, Wei
Li, Ming
Zhou, Lei
He, Rongxing
Photophysical studies for Cu(i)-based halides: broad excitation bands and highly efficient single-component warm white-light-emitting diodes
title Photophysical studies for Cu(i)-based halides: broad excitation bands and highly efficient single-component warm white-light-emitting diodes
title_full Photophysical studies for Cu(i)-based halides: broad excitation bands and highly efficient single-component warm white-light-emitting diodes
title_fullStr Photophysical studies for Cu(i)-based halides: broad excitation bands and highly efficient single-component warm white-light-emitting diodes
title_full_unstemmed Photophysical studies for Cu(i)-based halides: broad excitation bands and highly efficient single-component warm white-light-emitting diodes
title_short Photophysical studies for Cu(i)-based halides: broad excitation bands and highly efficient single-component warm white-light-emitting diodes
title_sort photophysical studies for cu(i)-based halides: broad excitation bands and highly efficient single-component warm white-light-emitting diodes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10208036/
https://www.ncbi.nlm.nih.gov/pubmed/37234888
http://dx.doi.org/10.1039/d3sc01762a
work_keys_str_mv AT zhoushuigen photophysicalstudiesforcuibasedhalidesbroadexcitationbandsandhighlyefficientsinglecomponentwarmwhitelightemittingdiodes
AT chenyihao photophysicalstudiesforcuibasedhalidesbroadexcitationbandsandhighlyefficientsinglecomponentwarmwhitelightemittingdiodes
AT likailei photophysicalstudiesforcuibasedhalidesbroadexcitationbandsandhighlyefficientsinglecomponentwarmwhitelightemittingdiodes
AT liuxiaowei photophysicalstudiesforcuibasedhalidesbroadexcitationbandsandhighlyefficientsinglecomponentwarmwhitelightemittingdiodes
AT zhangting photophysicalstudiesforcuibasedhalidesbroadexcitationbandsandhighlyefficientsinglecomponentwarmwhitelightemittingdiodes
AT shenwei photophysicalstudiesforcuibasedhalidesbroadexcitationbandsandhighlyefficientsinglecomponentwarmwhitelightemittingdiodes
AT liming photophysicalstudiesforcuibasedhalidesbroadexcitationbandsandhighlyefficientsinglecomponentwarmwhitelightemittingdiodes
AT zhoulei photophysicalstudiesforcuibasedhalidesbroadexcitationbandsandhighlyefficientsinglecomponentwarmwhitelightemittingdiodes
AT herongxing photophysicalstudiesforcuibasedhalidesbroadexcitationbandsandhighlyefficientsinglecomponentwarmwhitelightemittingdiodes