Excellent thermal stability and high quantum efficiency orange-red-emitting AlPO4:Eu3+ phosphors for WLED application
Orange-red-emitting AlPO4:Eu3+ phosphors have been systematically synthesized by a co-precipitation method. Under the excitation at 394 nm these phosphor shows strong orange-red emissions with the strongest peaks at 588, 594, 685 and 700 nm. The highest PL intensity is achieved at the dopant concent...
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Published in: | Journal of alloys and compounds Vol. 853; p. 156941 |
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Language: | English |
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05-02-2021
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Abstract | Orange-red-emitting AlPO4:Eu3+ phosphors have been systematically synthesized by a co-precipitation method. Under the excitation at 394 nm these phosphor shows strong orange-red emissions with the strongest peaks at 588, 594, 685 and 700 nm. The highest PL intensity is achieved at the dopant concentration of 3 mol% and the annealing temperature of 1000 °C. Additionally, 84% of the room-temperature emission intensity is still maintained at 160 °C, indicating a good thermal stability and practicality. By a Judd-Ofelt (JO) analysis, it is demonstrated that the symmetry sites surrounding Eu3+ ions are influenced by the dopant level. The lowest value of Ω2/Ω4 ratio of 0.27 reveals the highest symmetry site at the Eu3+ concentration of 3 mol%. The CIE 1931 color chromaticity coordinates (x, y) and the activation energy of the AlPO4:3%Eu3+ phosphor are (0.5602; 0.3862) and 0.28 eV, respectively. The color coordinates of the phosphor coated on NUV LED chip and its quantum efficiency (QE) are (0.5573, 0.3253) and 38.7%, respectively. To the best of our knowledge, this is the first time that a calculated QE of AlPO4:Eu3+-based orange-red-emitting LED is reported. The obtained results show a great potential of using orange-red-emitting AlPO4:Eu3+ phosphor for WLED application.
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•Orange-red-emitting AlPO4:Eu3+ phosphor is synthesized by a co-precipitation method.•The highest PL intensity is obtained at the annealing temperature of 1000 °C and the Eu3+ ions concentration of 3 mol%.•The highest symmetry site is found at the Eu3+ concentration of 3 mol% by a modified Judd-Ofelt analysis.•The color coordinates and quantum efficiency of phosphor-coated LED chip are (0.5573; 0.3253) and 38.7%, respectively. |
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AbstractList | Orange-red-emitting AlPO4:Eu3+ phosphors have been systematically synthesized by a co-precipitation method. Under the excitation at 394 nm these phosphor shows strong orange-red emissions with the strongest peaks at 588, 594, 685 and 700 nm. The highest PL intensity is achieved at the dopant concentration of 3 mol% and the annealing temperature of 1000 °C. Additionally, 84% of the room-temperature emission intensity is still maintained at 160 °C, indicating a good thermal stability and practicality. By a Judd-Ofelt (JO) analysis, it is demonstrated that the symmetry sites surrounding Eu3+ ions are influenced by the dopant level. The lowest value of Ω2/Ω4 ratio of 0.27 reveals the highest symmetry site at the Eu3+ concentration of 3 mol%. The CIE 1931 color chromaticity coordinates (x, y) and the activation energy of the AlPO4:3%Eu3+ phosphor are (0.5602; 0.3862) and 0.28 eV, respectively. The color coordinates of the phosphor coated on NUV LED chip and its quantum efficiency (QE) are (0.5573, 0.3253) and 38.7%, respectively. To the best of our knowledge, this is the first time that a calculated QE of AlPO4:Eu3+-based orange-red-emitting LED is reported. The obtained results show a great potential of using orange-red-emitting AlPO4:Eu3+ phosphor for WLED application.
[Display omitted]
•Orange-red-emitting AlPO4:Eu3+ phosphor is synthesized by a co-precipitation method.•The highest PL intensity is obtained at the annealing temperature of 1000 °C and the Eu3+ ions concentration of 3 mol%.•The highest symmetry site is found at the Eu3+ concentration of 3 mol% by a modified Judd-Ofelt analysis.•The color coordinates and quantum efficiency of phosphor-coated LED chip are (0.5573; 0.3253) and 38.7%, respectively. Orange-red-emitting AlPO4:Eu3+ phosphors have been systematically synthesized by a co-precipitation method. Under the excitation at 394 nm these phosphor shows strong orange-red emissions with the strongest peaks at 588, 594, 685 and 700 nm. The highest PL intensity is achieved at the dopant concentration of 3 mol% and the annealing temperature of 1000 °C. Additionally, 84% of the room-temperature emission intensity is still maintained at 160 °C, indicating a good thermal stability and practicality. By a Judd-Ofelt (JO) analysis, it is demonstrated that the symmetry sites surrounding Eu3+ ions are influenced by the dopant level. The lowest value of Ω2/Ω4 ratio of 0.27 reveals the highest symmetry site at the Eu3+ concentration of 3 mol%. The CIE 1931 color chromaticity coordinates (x, y) and the activation energy of the AlPO4:3%Eu3+ phosphor are (0.5602; 0.3862) and 0.28 eV, respectively. The color coordinates of the phosphor coated on NUV LED chip and its quantum efficiency (QE) are (0.5573, 0.3253) and 38.7%, respectively. To the best of our knowledge, this is the first time that a calculated QE of AlPO4:Eu3+-based orange-red-emitting LED is reported. The obtained results show a great potential of using orange-red-emitting AlPO4:Eu3+ phosphor for WLED application. |
ArticleNumber | 156941 |
Author | Nguyen, D.H Thu, L.T.H. Tran, M.T. Quang, N.V. Trung, D.Q. Tu, Nguyen Huy, P.T. |
Author_xml | – sequence: 1 givenname: M.T. surname: Tran fullname: Tran, M.T. email: trung.tranmanh@phenikaa-uni.edu.vn, trungtm89@gmail.com organization: Faculty of Materials Science and Engineering, Phenikaa University, Yen Nghia Ha-Dong District, Hanoi, 10000, Viet Nam – sequence: 2 givenname: Nguyen surname: Tu fullname: Tu, Nguyen email: tu.nguyen@phenikaa-uni.edu.vn organization: Phenikaa Research and Technology Institute (PRATI), Phenikaa University, A&A Green Phoenix Group, 167 Hoang Ngan, Hanoi, 10000, Viet Nam – sequence: 3 givenname: N.V. surname: Quang fullname: Quang, N.V. email: nvquang201@gmail.com organization: Faculty of Chemistry, Hanoi Pedagogical University 2, Xuan Hoa, Vinh Phuc, Viet Nam – sequence: 4 givenname: D.H surname: Nguyen fullname: Nguyen, D.H email: hung.nguyenduy@hust.edu.vn organization: Advanced Institute for Science and Technology, Hanoi University of Science and Technology (HUST), 01 Dai Co Viet, Hai Ba Trung, Hanoi, 10000, Viet Nam – sequence: 5 givenname: L.T.H. surname: Thu fullname: Thu, L.T.H. email: thu.luuthiha@phenikaa-uni.edu.vn organization: Faculty of Materials Science and Engineering, Phenikaa University, Yen Nghia Ha-Dong District, Hanoi, 10000, Viet Nam – sequence: 6 givenname: D.Q. surname: Trung fullname: Trung, D.Q. email: trung.doquang@phenikaa-uni.edu.vn organization: Phenikaa Research and Technology Institute (PRATI), Phenikaa University, A&A Green Phoenix Group, 167 Hoang Ngan, Hanoi, 10000, Viet Nam – sequence: 7 givenname: P.T. surname: Huy fullname: Huy, P.T. email: huy.phamthanh@phenikaa-uni.edu.vn organization: Faculty of Materials Science and Engineering, Phenikaa University, Yen Nghia Ha-Dong District, Hanoi, 10000, Viet Nam |
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Keywords | Orange-red-emitting phosphors Warm white LED Judd-Ofelt intensity parameters AlPO4:Eu3 |
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Snippet | Orange-red-emitting AlPO4:Eu3+ phosphors have been systematically synthesized by a co-precipitation method. Under the excitation at 394 nm these phosphor shows... Orange-red-emitting AlPO4:Eu3+ phosphors have been systematically synthesized by a co-precipitation method. Under the excitation at 394 nm these phosphor shows... |
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SubjectTerms | AlPO4:Eu3 Aluminum phosphate Chromaticity Color Dopants Europium Judd-Ofelt intensity parameters Orange-red-emitting phosphors Phosphors Quantum efficiency Room temperature Stability analysis Symmetry Thermal stability Warm white LED |
Title | Excellent thermal stability and high quantum efficiency orange-red-emitting AlPO4:Eu3+ phosphors for WLED application |
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