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Synthesis and photoluminescence characteristics of high color purity Ba(3)Y(4)O(9):Eu(3+) red-emitting phosphors with excellent thermal stability for warm W-LED application

Single phase Eu(3+)-activated Ba(3)Y(4)O(9) (Ba(3)(Y(1−x)Eu(x))(4)O(9)) red-emitting phosphors with different Eu(3+) doping concentrations were synthesized by a high temperature solid-state reaction method. The phase purity, crystal structure, photoluminescence properties, internal quantum efficienc...

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Autores principales: Liang, Jia, Sun, Liangling, Annadurai, G., Devakumar, Balaji, Wang, Shaoying, Sun, Qi, Qiao, Jialei, Guo, Heng, Li, Bin, Huang, Xiaoyong
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/PMC9085901/
https://www.ncbi.nlm.nih.gov/pubmed/35547519
http://dx.doi.org/10.1039/c8ra06129g
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author Liang, Jia
Sun, Liangling
Annadurai, G.
Devakumar, Balaji
Wang, Shaoying
Sun, Qi
Qiao, Jialei
Guo, Heng
Li, Bin
Huang, Xiaoyong
author_facet Liang, Jia
Sun, Liangling
Annadurai, G.
Devakumar, Balaji
Wang, Shaoying
Sun, Qi
Qiao, Jialei
Guo, Heng
Li, Bin
Huang, Xiaoyong
author_sort Liang, Jia
collection PubMed
description Single phase Eu(3+)-activated Ba(3)Y(4)O(9) (Ba(3)(Y(1−x)Eu(x))(4)O(9)) red-emitting phosphors with different Eu(3+) doping concentrations were synthesized by a high temperature solid-state reaction method. The phase purity, crystal structure, photoluminescence properties, internal quantum efficiency, decay lifetimes, and thermal stability were investigated. Upon excitation at 396 nm near-ultraviolet light and 469 nm blue light, the Ba(3)(Y(1−x)Eu(x))(4)O(9) phosphors exhibited a strong red emission at 614 nm due to the (5)D(0) → (7)F(2) transition of Eu(3+) ions. The optimal doping concentration of Eu(3+) ions in Ba(3)(Y(1−x)Eu(x))(4)O(9) was found to be x = 0.25. Furthermore, the critical distance was calculated to be 12.78 Å and the energy transfer mechanism for the concentration quenching effect was determined to be quadrupole–quadrupole interaction. In addition, the Commission Internationale de I'Eclairage (CIE) chromaticity coordinates of Ba(3)(Y(0.75)Eu(0.25))(4)O(9) phosphors were measured to be (0.6695, 0.3302) which located at the red region, and significantly, the high color purity was about 97.9%. The as-synthesized phosphors also possessed excellent thermal stability and the activation energy was determined to be 0.29 eV. Therefore, the investigated results indicated that the Ba(3)Y(4)O(9):Eu(3+) phosphor may be a suitable candidate as a red phosphor for white light-emitting diodes under effective excitation at near-ultraviolet and blue light.
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spelling pubmed-90859012022-05-10 Synthesis and photoluminescence characteristics of high color purity Ba(3)Y(4)O(9):Eu(3+) red-emitting phosphors with excellent thermal stability for warm W-LED application Liang, Jia Sun, Liangling Annadurai, G. Devakumar, Balaji Wang, Shaoying Sun, Qi Qiao, Jialei Guo, Heng Li, Bin Huang, Xiaoyong RSC Adv Chemistry Single phase Eu(3+)-activated Ba(3)Y(4)O(9) (Ba(3)(Y(1−x)Eu(x))(4)O(9)) red-emitting phosphors with different Eu(3+) doping concentrations were synthesized by a high temperature solid-state reaction method. The phase purity, crystal structure, photoluminescence properties, internal quantum efficiency, decay lifetimes, and thermal stability were investigated. Upon excitation at 396 nm near-ultraviolet light and 469 nm blue light, the Ba(3)(Y(1−x)Eu(x))(4)O(9) phosphors exhibited a strong red emission at 614 nm due to the (5)D(0) → (7)F(2) transition of Eu(3+) ions. The optimal doping concentration of Eu(3+) ions in Ba(3)(Y(1−x)Eu(x))(4)O(9) was found to be x = 0.25. Furthermore, the critical distance was calculated to be 12.78 Å and the energy transfer mechanism for the concentration quenching effect was determined to be quadrupole–quadrupole interaction. In addition, the Commission Internationale de I'Eclairage (CIE) chromaticity coordinates of Ba(3)(Y(0.75)Eu(0.25))(4)O(9) phosphors were measured to be (0.6695, 0.3302) which located at the red region, and significantly, the high color purity was about 97.9%. The as-synthesized phosphors also possessed excellent thermal stability and the activation energy was determined to be 0.29 eV. Therefore, the investigated results indicated that the Ba(3)Y(4)O(9):Eu(3+) phosphor may be a suitable candidate as a red phosphor for white light-emitting diodes under effective excitation at near-ultraviolet and blue light. The Royal Society of Chemistry 2018-09-17 /pmc/articles/PMC9085901/ /pubmed/35547519 http://dx.doi.org/10.1039/c8ra06129g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Liang, Jia
Sun, Liangling
Annadurai, G.
Devakumar, Balaji
Wang, Shaoying
Sun, Qi
Qiao, Jialei
Guo, Heng
Li, Bin
Huang, Xiaoyong
Synthesis and photoluminescence characteristics of high color purity Ba(3)Y(4)O(9):Eu(3+) red-emitting phosphors with excellent thermal stability for warm W-LED application
title Synthesis and photoluminescence characteristics of high color purity Ba(3)Y(4)O(9):Eu(3+) red-emitting phosphors with excellent thermal stability for warm W-LED application
title_full Synthesis and photoluminescence characteristics of high color purity Ba(3)Y(4)O(9):Eu(3+) red-emitting phosphors with excellent thermal stability for warm W-LED application
title_fullStr Synthesis and photoluminescence characteristics of high color purity Ba(3)Y(4)O(9):Eu(3+) red-emitting phosphors with excellent thermal stability for warm W-LED application
title_full_unstemmed Synthesis and photoluminescence characteristics of high color purity Ba(3)Y(4)O(9):Eu(3+) red-emitting phosphors with excellent thermal stability for warm W-LED application
title_short Synthesis and photoluminescence characteristics of high color purity Ba(3)Y(4)O(9):Eu(3+) red-emitting phosphors with excellent thermal stability for warm W-LED application
title_sort synthesis and photoluminescence characteristics of high color purity ba(3)y(4)o(9):eu(3+) red-emitting phosphors with excellent thermal stability for warm w-led application
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9085901/
https://www.ncbi.nlm.nih.gov/pubmed/35547519
http://dx.doi.org/10.1039/c8ra06129g
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