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A dual-mode optical thermometer based on dual-excitation Bi3+,Sm3+ co-doped Y4GeO8 phosphors

JOURNAL OF RARE EARTHS [2023]
Danyu Zhang, Yuxuan Luo, Junyu Chen, Lianjie Li, Hai Guo
ABSTRACT

Dual-excitation and dual-emission Y 4 GeO 8 :Bi 3+ ,Sm 3+ phosphors were manufactured by traditional solid-phase sintering technique. The X-ray diffraction, morphology, photoluminescence, energy transfer process and temperature sensing properties of Y 4 GeO 8 :Bi 3+ ,Sm 3+ samples were comprehensively evaluated. The Y 4 GeO 8 :Bi 3+ ,Sm 3+ phosphors exhibit characteristic emissions of Bi 3+ ( 3 P 1 → 1 S 0 ) and Sm 3+ ( 4 G 5/2 → 6 H) under both 290 and 347 nm excitations. In fluorescence intensity ratio and Commission International de L'Eclairage coordinates modes, Y 4 GeO 8 :Bi 3+ ,Sm 3+ samples present excellent temperature measurement performance. The maximum relative sensitivity ( S r-max ) values of the former are 1.55 %/K (460 K, 290 nm excitation) and 0.82 %/K (506 K, 347 nm excitation). The S r-max ( x ) values of the latter are 0.21 %/K (437 K, 290 nm excitation) and 0.15 %/K (513 K, 347 nm excitation). These results illustrate that Y 4 GeO 8 :Bi 3+ ,Sm 3+ phosphors can be used as a candidate material for a dual-mode optical thermometer under dual-excitation.

MATERIALS

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