1. Luminescence and optical thermometry based on silico-carnotite Ca3Y2Si3O12: Pr3+ phosphor.
- Author
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Tian, Xiuying, Li, Jingliang, Sheng, Huiyan, Li, Ting, Guo, Lejia, Ji, Changyan, Huang, Zhi, Wen, Jin, Liu, Xin, Li, Chunyan, Li, Jing, and Peng, Yangxi
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THERMOMETRY , *PHOSPHORS , *BAND gaps , *DIPOLE-dipole interactions , *ROUGH surfaces , *LUMINESCENCE - Abstract
The photoluminescence and temperature sensitivities of Ca 3 Y 2 Si 3 O 12 :Pr3+ thermo-phosphors with silico-carnotite structure obtained by solid state reaction method were investigated. Pr3+ ions were accommodated in the A sites having coordination number of 9 in AB 2 C 2 (SiO 4) 3 to replace Y3+ ions. The typical sample consisted of microcrystals with an irregular structure and the surface of particles was smooth, which could enhance the luminescence due to reducing the scattering and non-radiation produced by rough surfaces. The band gap value of typical sample was about 4.01 eV. Dipole-dipole interaction could account for concentration quenching. The two thermometry strategies including normalized intensities from 3P 0 →3H 4 transition and Fluorescence intensity ration (FIR) of 3P 0 →3H 4 /3P 1 →3H 5 transitions were employed for temperature sensing in 298–573 K. The results revealed that Ca 3 Y 2 Si 3 O 12 :Pr3+ thermo-phosphors had good temperature sensitivity performance with maximum S r of 0.59% K−1@573 K and 0.762% K−1@298 K in the above two methods, respectively. Hence, Ca 3 Y 2 Si 3 O 12 :Pr3+ would be a promising candidate in the field of optical thermometry. [ABSTRACT FROM AUTHOR]
- Published
- 2022
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