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Photoluminescence property, energy transfer mechanism, and optical thermometric behavior of bismuth-europium codoped disordered melilite-type phosphor.

Authors :
Yang, Shuo
Sun, Wenzhi
He, Zhifei
Xu, Qinfeng
Zhang, Shufang
Yang, Chuanlu
Jiao, Mengmeng
Source :
Journal of Alloys & Compounds. Apr2024, Vol. 980, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

In the pursuit of optical thermometers, the fluorescence intensity ratio technique has aroused much interest because of the urgent need for noncontact thermometers driven by technological development. Here, an optical thermometer BaLaGa 3 O 7 :Bi3+,Eu3+ based on different thermal responses of Eu3+ and Bi3+ emissions had been reported. The structure, morphology, luminescence properties, and optical thermometric behavior were investigated by experimental data comprising X-ray diffraction patterns, microscopy, and luminescence spectroscopy. The dopants with eight oxygen ligands in the melilite-type host form emission centers. The Bi3+ singly doped, and Eu3+ singly doped phosphors can have intense blue and red emissions due to the 3P 1 -1S 0 and 5D 0 -7F J(0−4) electron transitions, respectively. In the Bi3+-Eu3+ codoped phosphors, tunable emission colors were obtained owing to Bi3+→Eu3+ energy transfer and doping concentration variation. Moreover, the intensity ratio of Bi3+ and Eu3+ emissions varied with the temperature in the range of 298 − 523 K. The relative and absolute sensitivities of the as-prepared phosphor were determined to be 0.29%K−1 and 0.20%K−1, respectively, manifesting that the prepared BaLaGa 3 O 7 :Bi3+,Eu3+ has the potential to serve as phosphors for optical thermometers. • The novel optical thermometer BaLaGa 3 O 7 :Bi3+,Eu3+ based on FIR technique had been reported for the first time. • Photoluminescence static and dynamic properties of BaLaGa 3 O 7 :Bi3+ at 300 K and 77 K had been investigated in detail. • Tunable emission colour of BaLaGa 3 O 7 :Bi3+,Eu3+ had been realized by Bi3+→Eu3+ energy transfer and doping content variation. • The as-prepared BaLaGa 3 O 7 :Bi3+,Eu3+ possesses good temperature resolution and high sensitivity.. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09258388
Volume :
980
Database :
Academic Search Index
Journal :
Journal of Alloys & Compounds
Publication Type :
Academic Journal
Accession number :
175296978
Full Text :
https://doi.org/10.1016/j.jallcom.2024.173622