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- W3112561423 endingPage "110724" @default.
- W3112561423 startingPage "110724" @default.
- W3112561423 abstract "Optical thermometer based on luminescent materials plays a vital role in many fields due to its fast response and non-contact properties. However, most of the luminescent materials are primally affected by thermally quenching effect, which restricts the range and accuracy of optical temperature sensing. In this work, the Yb3+/Nd3+ codoped LiNbO3 ceramics with thermally enhanced emission have been fabricated for a fluorescent ratiometric thermometer. The temperature sensing is based on the two thermally coupled levels of Nd3+:4F7/2 and 4F5/2 under 980 nm excitation. Due to the anti-thermal quenching effect, the near-infrared emission intensity of the two levels increases as the temperature rises. The thermally enhanced anti-Stokes emission leads to an excellent temperature measurement performance. The relative sensitivity is determined to be as high as 0.5747% K−1. Besides, the ceramics also exhibit an excellent repeatability after five heat-cooling cycles. These results suggest that the Yb3+/Nd3+ codoped LiNbO3 ceramics could be a promising near-infrared thermometer in the temperature sensing fields." @default.
- W3112561423 created "2020-12-21" @default.
- W3112561423 creator A5011487190 @default.
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- W3112561423 date "2021-02-01" @default.
- W3112561423 modified "2023-10-16" @default.
- W3112561423 title "Thermally enhanced anti-Stokes emission of Yb/Nd codoped lithium niobate ceramics for temperature sensing" @default.
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- W3112561423 doi "https://doi.org/10.1016/j.optmat.2020.110724" @default.
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