Dalton Transactions · 2021 · 23 citations · 39 references
The pursuit of optical temperature sensing with high thermal sensitivity to discriminate small temperature changes without contact with the subject possesses a crucial technological and scientific significance. Ratiometric temperature detection based on transition metals and lanthanides emerges as a promising strategy to achieve the purpose due to the dopants' distinct thermal quenching rates. In this work, a new CaGdAlO<sub>4</sub>:Mn<sup>4+</sup>,Tb<sup>3+</sup> luminescent thermometer was developed. The combination of the highly-thermal-sensitive red emission from Mn<sup>4+</sup> ions with the thermally-robust green emission from Tb<sup>3+</sup> ions renders the thermometer with a maximum relative thermal sensitivity of 2.3% K<sup>-1</sup> at 398 K. The well-separated red and green channels in digital images enable further evaluation of thermal sensitivity. The estimated thermal sensitivity is 2.23% K<sup>-1</sup> at 398 K from the pixel intensity ratio of red and green channels.
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Optical temperature sensing of rare-earth ion doped phosphors
Xiangfu Wang, Qing Liu, Yanyan Bu et al. · RSC Advances · 2015 · 774 citations · Full text
Optical Materials, Engineering, Optical Temperature Sensing +16
YAG:Ce<sup>3+</sup> Transparent Ceramic Phosphors Brighten the Next‐Generation Laser‐Driven Lighting
Qi Yao, Pan Hu, Peng Sun et al. · Advanced Materials · 2020 · 502 citations
Dual-Emitting Nanoscale Temperature Sensors
Emily J. McLaurin, Liam R. Bradshaw, Daniel R. Gamelin · Chemistry of Materials · 2013 · 435 citations