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Novel Eu(3+)-activated Ba(2)Y(5)B(5)O(17) red-emitting phosphors for white LEDs: high color purity, high quantum efficiency and excellent thermal stability

Eu(3+)-activated Ba(2)Y(5)B(5)O(17) (Ba(2)Y(5−x)Eu(x)B(5)O(17); x = 0.1–1) red-emitting phosphors were synthesized by the conventional high temperature solid-state reaction method in an air atmosphere. Powder X-ray diffraction (XRD) analysis confirmed the pure phase formation of the as-synthesized p...

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Autores principales: Annadurai, G., Devakumar, Balaji, Guo, Heng, Vijayakumar, R., Li, Bin, Sun, Liangling, Huang, Xiaoyong, Wang, Kai, Sun, Xiao Wei
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/PMC9081613/
https://www.ncbi.nlm.nih.gov/pubmed/35540142
http://dx.doi.org/10.1039/c8ra03059f
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author Annadurai, G.
Devakumar, Balaji
Guo, Heng
Vijayakumar, R.
Li, Bin
Sun, Liangling
Huang, Xiaoyong
Wang, Kai
Sun, Xiao Wei
author_facet Annadurai, G.
Devakumar, Balaji
Guo, Heng
Vijayakumar, R.
Li, Bin
Sun, Liangling
Huang, Xiaoyong
Wang, Kai
Sun, Xiao Wei
author_sort Annadurai, G.
collection PubMed
description Eu(3+)-activated Ba(2)Y(5)B(5)O(17) (Ba(2)Y(5−x)Eu(x)B(5)O(17); x = 0.1–1) red-emitting phosphors were synthesized by the conventional high temperature solid-state reaction method in an air atmosphere. Powder X-ray diffraction (XRD) analysis confirmed the pure phase formation of the as-synthesized phosphors. Morphological studies were performed using field emission-scanning electron microscopy (FE-SEM). The photoluminescence spectra, lifetimes, color coordinates and internal quantum efficiency (IQE) as well as the temperature-dependent emission spectra were investigated systematically. Upon 396 nm excitation, Ba(2)Y(5−x)Eu(x)B(5)O(17) showed red emission peaking at 616 nm which was attributed to the (5)D(0) → (7)F(2) electric dipole transition of Eu(3+) ions. Meanwhile, the influences of different concentrations of Eu(3+) ions on the PL intensity were also discussed. The optimum concentration of Eu(3+) ions in the Ba(2)Y(5−x)Eu(x)B(5)O(17) phosphors was found to be x = 0.8. The concentration quenching mechanism was attributed to the dipole–dipole interaction and the critical distance (R(c)) for energy transfer among Eu(3+) ions was determined to be 5.64 Å. The asymmetry ratio [((5)D(0) → (7)F(2))/((5)D(0) → (7)F(1))] of Ba(2)Y(4.2)Eu(0.8)B(5)O(17) phosphors was calculated to be 3.82. The fluorescence decay lifetimes were also determined for Ba(2)Y(5−x)Eu(x)B(5)O(17) phosphors. In addition, the CIE color coordinates of the Ba(2)Y(4.2)Eu(0.8)B(5)O(17) phosphors (x = 0.653, y = 0.345) were found to be very close to the National Television System Committee (NTSC) standard values (x = 0.670, y = 0.330) of red emission and also showed high color purity (∼94.3%). The corresponding internal quantum efficiency of the Ba(2)Y(4.2)Eu(0.8)B(5)O(17) sample was measured to be 47.2%. Furthermore, the as-synthesized phosphors exhibited good thermal stability with an activation energy of 0.282 eV. The above results revealed that the red emitting Ba(2)Y(4.2)Eu(0.8)B(5)O(17) phosphors could be potential candidates for application in near-UV excited white light emitting diodes.
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spelling pubmed-90816132022-05-09 Novel Eu(3+)-activated Ba(2)Y(5)B(5)O(17) red-emitting phosphors for white LEDs: high color purity, high quantum efficiency and excellent thermal stability Annadurai, G. Devakumar, Balaji Guo, Heng Vijayakumar, R. Li, Bin Sun, Liangling Huang, Xiaoyong Wang, Kai Sun, Xiao Wei RSC Adv Chemistry Eu(3+)-activated Ba(2)Y(5)B(5)O(17) (Ba(2)Y(5−x)Eu(x)B(5)O(17); x = 0.1–1) red-emitting phosphors were synthesized by the conventional high temperature solid-state reaction method in an air atmosphere. Powder X-ray diffraction (XRD) analysis confirmed the pure phase formation of the as-synthesized phosphors. Morphological studies were performed using field emission-scanning electron microscopy (FE-SEM). The photoluminescence spectra, lifetimes, color coordinates and internal quantum efficiency (IQE) as well as the temperature-dependent emission spectra were investigated systematically. Upon 396 nm excitation, Ba(2)Y(5−x)Eu(x)B(5)O(17) showed red emission peaking at 616 nm which was attributed to the (5)D(0) → (7)F(2) electric dipole transition of Eu(3+) ions. Meanwhile, the influences of different concentrations of Eu(3+) ions on the PL intensity were also discussed. The optimum concentration of Eu(3+) ions in the Ba(2)Y(5−x)Eu(x)B(5)O(17) phosphors was found to be x = 0.8. The concentration quenching mechanism was attributed to the dipole–dipole interaction and the critical distance (R(c)) for energy transfer among Eu(3+) ions was determined to be 5.64 Å. The asymmetry ratio [((5)D(0) → (7)F(2))/((5)D(0) → (7)F(1))] of Ba(2)Y(4.2)Eu(0.8)B(5)O(17) phosphors was calculated to be 3.82. The fluorescence decay lifetimes were also determined for Ba(2)Y(5−x)Eu(x)B(5)O(17) phosphors. In addition, the CIE color coordinates of the Ba(2)Y(4.2)Eu(0.8)B(5)O(17) phosphors (x = 0.653, y = 0.345) were found to be very close to the National Television System Committee (NTSC) standard values (x = 0.670, y = 0.330) of red emission and also showed high color purity (∼94.3%). The corresponding internal quantum efficiency of the Ba(2)Y(4.2)Eu(0.8)B(5)O(17) sample was measured to be 47.2%. Furthermore, the as-synthesized phosphors exhibited good thermal stability with an activation energy of 0.282 eV. The above results revealed that the red emitting Ba(2)Y(4.2)Eu(0.8)B(5)O(17) phosphors could be potential candidates for application in near-UV excited white light emitting diodes. The Royal Society of Chemistry 2018-06-27 /pmc/articles/PMC9081613/ /pubmed/35540142 http://dx.doi.org/10.1039/c8ra03059f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Annadurai, G.
Devakumar, Balaji
Guo, Heng
Vijayakumar, R.
Li, Bin
Sun, Liangling
Huang, Xiaoyong
Wang, Kai
Sun, Xiao Wei
Novel Eu(3+)-activated Ba(2)Y(5)B(5)O(17) red-emitting phosphors for white LEDs: high color purity, high quantum efficiency and excellent thermal stability
title Novel Eu(3+)-activated Ba(2)Y(5)B(5)O(17) red-emitting phosphors for white LEDs: high color purity, high quantum efficiency and excellent thermal stability
title_full Novel Eu(3+)-activated Ba(2)Y(5)B(5)O(17) red-emitting phosphors for white LEDs: high color purity, high quantum efficiency and excellent thermal stability
title_fullStr Novel Eu(3+)-activated Ba(2)Y(5)B(5)O(17) red-emitting phosphors for white LEDs: high color purity, high quantum efficiency and excellent thermal stability
title_full_unstemmed Novel Eu(3+)-activated Ba(2)Y(5)B(5)O(17) red-emitting phosphors for white LEDs: high color purity, high quantum efficiency and excellent thermal stability
title_short Novel Eu(3+)-activated Ba(2)Y(5)B(5)O(17) red-emitting phosphors for white LEDs: high color purity, high quantum efficiency and excellent thermal stability
title_sort novel eu(3+)-activated ba(2)y(5)b(5)o(17) red-emitting phosphors for white leds: high color purity, high quantum efficiency and excellent thermal stability
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9081613/
https://www.ncbi.nlm.nih.gov/pubmed/35540142
http://dx.doi.org/10.1039/c8ra03059f
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