Energy transfer between two luminescent centers and photoluminescent properties of Ca4-yLa6(AlO4)x(SiO4)6-xO1-x/2: yEu2+apatite structure phosphors
Green-emitting, apatite structure of Ca4-yLa6(AlO4)x(SiO4)6-xO1-x/2: yEu2+ was synthesized by using the high-temperature solid-state method under reducing atmosphere (90%N2–10%H2). Corresponding to the Eu2+ of 4f65 d1→4f7 transition at the excitation wavelength of 335 nm, a broadband emission of 450...
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Published in | Journal of luminescence Vol. 235 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.07.2021
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Abstract | Green-emitting, apatite structure of Ca4-yLa6(AlO4)x(SiO4)6-xO1-x/2: yEu2+ was synthesized by using the high-temperature solid-state method under reducing atmosphere (90%N2–10%H2). Corresponding to the Eu2+ of 4f65 d1→4f7 transition at the excitation wavelength of 335 nm, a broadband emission of 450–700 nm showed. Eu2+ lattice selection in Ca4-yLa6(AlO4)x(SiO4)6-xO1-x/2: yEu2+ phosphor were discussed conjunction with apatite crystal structure characteristics. The design of (AlO4)5-/(SiO4)4- various ratios and Eu2+ doping concentration improved the Eu2+ luminous intensity and the red-shift of optical emission spectra. Energy transfer between the two luminescent centers of Eu(I) and Eu (II) happened, and clearly distinguished by photoluminescence decay curves monitored at 480 nm and 560 nm with the average-lifetime (τ) of Eu(I) are 240.5 ns, Eu (II) are 405.3 ns, respectively. The temperature-dependent emissions along with blue-shift phenomenon were addressed through the transition process of energy level. Eu(I) and Eu(II) lattice sites.
•By adjusting the ratio of (AlO4)5-/(SiO4)4-,the emission peak of Ca3.99La6(AlO4)x(SiO4)6-xO1-x/2:0.01Eu2+ can be adjusted.•The emission intensity of Ca4-yLa6(AlO4)1.5(SiO4)4.5O0.25: yEu2+ was increased by about 90.4%(initial intensity).•Distinguished the positions of Eu(I) and Eu(II),and confirmed the energy transfer between them. |
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AbstractList | Green-emitting, apatite structure of Ca4-yLa6(AlO4)x(SiO4)6-xO1-x/2: yEu2+ was synthesized by using the high-temperature solid-state method under reducing atmosphere (90%N2–10%H2). Corresponding to the Eu2+ of 4f65 d1→4f7 transition at the excitation wavelength of 335 nm, a broadband emission of 450–700 nm showed. Eu2+ lattice selection in Ca4-yLa6(AlO4)x(SiO4)6-xO1-x/2: yEu2+ phosphor were discussed conjunction with apatite crystal structure characteristics. The design of (AlO4)5-/(SiO4)4- various ratios and Eu2+ doping concentration improved the Eu2+ luminous intensity and the red-shift of optical emission spectra. Energy transfer between the two luminescent centers of Eu(I) and Eu (II) happened, and clearly distinguished by photoluminescence decay curves monitored at 480 nm and 560 nm with the average-lifetime (τ) of Eu(I) are 240.5 ns, Eu (II) are 405.3 ns, respectively. The temperature-dependent emissions along with blue-shift phenomenon were addressed through the transition process of energy level. Eu(I) and Eu(II) lattice sites.
•By adjusting the ratio of (AlO4)5-/(SiO4)4-,the emission peak of Ca3.99La6(AlO4)x(SiO4)6-xO1-x/2:0.01Eu2+ can be adjusted.•The emission intensity of Ca4-yLa6(AlO4)1.5(SiO4)4.5O0.25: yEu2+ was increased by about 90.4%(initial intensity).•Distinguished the positions of Eu(I) and Eu(II),and confirmed the energy transfer between them. |
ArticleNumber | 117991 |
Author | Hussain, Fayaz Wang, Huanping Qian, Haojun Luo, Xinjiang Huang, Qingming Su, Weitao Song, Kaixin Yang, Liu Fan, Chenli |
Author_xml | – sequence: 1 givenname: Haojun surname: Qian fullname: Qian, Haojun email: 1138154591@qq.com organization: College of Electronics Information, Hangzhou Dianzi University, Hangzhou 310018, PR China – sequence: 2 givenname: Chenli surname: Fan fullname: Fan, Chenli email: 572743060@qq.com organization: College of Electronics Information, Hangzhou Dianzi University, Hangzhou 310018, PR China – sequence: 3 givenname: Fayaz orcidid: 0000-0002-4337-7006 surname: Hussain fullname: Hussain, Fayaz organization: Department of Materials Engineering, NED University of Engineering and Technology, Main University Road, Karachi, 75279, Pakistan – sequence: 4 givenname: Kaixin surname: Song fullname: Song, Kaixin email: kxsong@hdu.edu.cn organization: College of Electronics Information, Hangzhou Dianzi University, Hangzhou 310018, PR China – sequence: 5 givenname: Xinjiang surname: Luo fullname: Luo, Xinjiang organization: College of Electronics Information, Hangzhou Dianzi University, Hangzhou 310018, PR China – sequence: 6 givenname: Weitao surname: Su fullname: Su, Weitao organization: College of Sciences, Hangzhou Dianzi University, Hangzhou, 310018, PR China – sequence: 7 givenname: Huanping surname: Wang fullname: Wang, Huanping organization: College of Materials Sciences and Engineering, China Jiliang University, Hangzhou, 310018, PR China – sequence: 8 givenname: Qingming surname: Huang fullname: Huang, Qingming organization: Testing Center of Fuzhou University, China Fuzhou University, Fuzhou, 350116, PR China – sequence: 9 givenname: Liu orcidid: 0000-0001-8232-3847 surname: Yang fullname: Yang, Liu organization: College of Electronics Information, Hangzhou Dianzi University, Hangzhou 310018, PR China |
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SubjectTerms | Apatite Energy transfer Phosphor Photoluminescence |
Title | Energy transfer between two luminescent centers and photoluminescent properties of Ca4-yLa6(AlO4)x(SiO4)6-xO1-x/2: yEu2+apatite structure phosphors |
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