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Color-tunable phosphor of Sr(3)YNa(PO(4))(3)F:Tb(3+)via interionic cross-relaxation energy transfer

A series of color-tunable Sr(3)YNa(PO(4))(3)F:Tb(3+) phosphors with a fluorapatite structure were synthesized by a traditional high-temperature solid state reaction. The emitting color tuning from blue to green can be observed by gradually increasing Tb(3+) concentrations, which is attributed to the...

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Autores principales: Zhang, Bingye, Ying, Shitian, Han, Lu, Zhang, Jinsu, Chen, Baojiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9082576/
https://www.ncbi.nlm.nih.gov/pubmed/35539798
http://dx.doi.org/10.1039/c8ra05515g
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author Zhang, Bingye
Ying, Shitian
Han, Lu
Zhang, Jinsu
Chen, Baojiu
author_facet Zhang, Bingye
Ying, Shitian
Han, Lu
Zhang, Jinsu
Chen, Baojiu
author_sort Zhang, Bingye
collection PubMed
description A series of color-tunable Sr(3)YNa(PO(4))(3)F:Tb(3+) phosphors with a fluorapatite structure were synthesized by a traditional high-temperature solid state reaction. The emitting color tuning from blue to green can be observed by gradually increasing Tb(3+) concentrations, which is attributed to the enhanced cross-relaxation (CR) between Tb(3+) ions, as described by ((5)D(3), (7)F(6))–((5)D(4), (7)F(0)). The CR process is analyzed based on the Dexter and Inokuti–Hirayama model, which is assigned to the electric dipole–dipole interaction. The energy transfer critical distance between Tb(3+) ions is evaluated to be 18.1 Å. In addition, the thermal quenching mechanism of Sr(3)YNa(PO(4))(3)F:Tb(3+) is also investigated. At the general working temperature of an LED (423 K), the luminescence intensity still maintains 81% and 92% with the Tb(3+) concentration of 10 and 30 mol%, respectively, indicating an excellent thermal quenching performance of Tb(3+). Due to the good optical and thermal properties, the Sr(3)YNa(PO(4))(3)F:Tb(3+) phosphor can be used as a promising green emitting phosphor candidate in the field of white light applications.
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spelling pubmed-90825762022-05-09 Color-tunable phosphor of Sr(3)YNa(PO(4))(3)F:Tb(3+)via interionic cross-relaxation energy transfer Zhang, Bingye Ying, Shitian Han, Lu Zhang, Jinsu Chen, Baojiu RSC Adv Chemistry A series of color-tunable Sr(3)YNa(PO(4))(3)F:Tb(3+) phosphors with a fluorapatite structure were synthesized by a traditional high-temperature solid state reaction. The emitting color tuning from blue to green can be observed by gradually increasing Tb(3+) concentrations, which is attributed to the enhanced cross-relaxation (CR) between Tb(3+) ions, as described by ((5)D(3), (7)F(6))–((5)D(4), (7)F(0)). The CR process is analyzed based on the Dexter and Inokuti–Hirayama model, which is assigned to the electric dipole–dipole interaction. The energy transfer critical distance between Tb(3+) ions is evaluated to be 18.1 Å. In addition, the thermal quenching mechanism of Sr(3)YNa(PO(4))(3)F:Tb(3+) is also investigated. At the general working temperature of an LED (423 K), the luminescence intensity still maintains 81% and 92% with the Tb(3+) concentration of 10 and 30 mol%, respectively, indicating an excellent thermal quenching performance of Tb(3+). Due to the good optical and thermal properties, the Sr(3)YNa(PO(4))(3)F:Tb(3+) phosphor can be used as a promising green emitting phosphor candidate in the field of white light applications. The Royal Society of Chemistry 2018-07-16 /pmc/articles/PMC9082576/ /pubmed/35539798 http://dx.doi.org/10.1039/c8ra05515g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhang, Bingye
Ying, Shitian
Han, Lu
Zhang, Jinsu
Chen, Baojiu
Color-tunable phosphor of Sr(3)YNa(PO(4))(3)F:Tb(3+)via interionic cross-relaxation energy transfer
title Color-tunable phosphor of Sr(3)YNa(PO(4))(3)F:Tb(3+)via interionic cross-relaxation energy transfer
title_full Color-tunable phosphor of Sr(3)YNa(PO(4))(3)F:Tb(3+)via interionic cross-relaxation energy transfer
title_fullStr Color-tunable phosphor of Sr(3)YNa(PO(4))(3)F:Tb(3+)via interionic cross-relaxation energy transfer
title_full_unstemmed Color-tunable phosphor of Sr(3)YNa(PO(4))(3)F:Tb(3+)via interionic cross-relaxation energy transfer
title_short Color-tunable phosphor of Sr(3)YNa(PO(4))(3)F:Tb(3+)via interionic cross-relaxation energy transfer
title_sort color-tunable phosphor of sr(3)yna(po(4))(3)f:tb(3+)via interionic cross-relaxation energy transfer
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9082576/
https://www.ncbi.nlm.nih.gov/pubmed/35539798
http://dx.doi.org/10.1039/c8ra05515g
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