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Optical thermometry using phonon-assisted luminescence thermal enhancement of Tm3+-doped upconversion under
Qi Xiao1, Na Zhou2, Yuxiao Wang1
1School of Physics, Harbin Institute of Technology, Harbin 150001, PR China.
Abstract:
Thermally enhanced upconversion luminescence demonstrates distinct advantages for optical thermometry in complex scenarios. In this work, NaYS2:Tm3+ phosphors are synthesized via a solid-gas reaction method, followed by systematic investigation of the upconversion luminescence characteristic. The abundant energy level structure of Tm3+ enables its dual functionality as both sensitizer and activator, achieving self-sensitized upconversion luminescence. Under both 808 and 1208 nm excitation, significant thermal enhancement of emission is observed with elevating temperature, which can be attributed to activated phonon-assisted thermal population effect. The temperature-dependent luminescence of NaYS2:Tm3+ is thoroughly analyzed by LIR technique, focusing on the thermally coupled energy levels of 1G4(1)/1G4(2) and 3F2/3F3. Remarkably, the developed Tm3+ single-doped thermometer based on the luminescence thermal enhancement exhibits excellent temperature sensing performance under multi-wavelength excitation of 808 and 1208 nm, exhibiting promising potential for thermometry with wide temperature range and high sensitivity. These findings not only provide a viable strategy for achieving high performance thermometry but also deepen the understanding of thermal enhancement mechanisms in upconversion materials.
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