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Abstract
Sr2(La1-xErx)F7/polyacrylonitrile composite fibers with special pliability and excellent crystal dispersibility have been fabricated, which provide smaller size and appropriate temperature sensitivity. Up-conversion emission shows quadratic dependence of the photoluminescence intensity on pump power, confirming the participation of two photons during the excitation processes. The composite fibers, combining main and auxiliary sensing derived from green and red emissions, give fibers the ability to obtain accurate results and better reproducibility. Among them, assigning the green emission as the main indicator of non-contact temperature sensing, the absolute and relative sensitivities are 0.514% K-1 and 0.654% K-1 at 373 K, respectively. Furthermore, the ratio of green and red emission serves as an auxiliary monitoring parameter to calibrate the deviation, where the absolute and relative sensitivities reach 7.208% K-1 and 0.901% K-1 at 373 K. In general, composite fibers with excellent dual-ratiometric temperature sensing are expected to be applied in biological probes, miniature devices and accurate temperature sensors.
Original language | English |
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Pages (from-to) | 7997-8008 |
Journal | Dalton Transactions |
Volume | 51 |
Issue number | 20 |
Online published | 27 Apr 2022 |
DOIs | |
Publication status | Published - 28 May 2022 |
Funding
The research work was supported by the Scientific Research Funding Project from the Educational Department of Liaoning Province, P. R. China (Grant No. J2020047) and the Research Grants Council of the Hong Kong Special Administrative Region, P. R. China (Grant No. CityU 11219819).
Research Keywords
- UP-CONVERSION LUMINESCENCE
- TEMPERATURE SENSING PROPERTIES
- PHOTOLUMINESCENCE PROPERTIES
- EMISSION
- NANOPARTICLES
- NANOCRYSTALS
- ER3+
- EXCITATION
- PHOSPHOR
- YB3+
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Dive into the research topics of 'A dual-ratiometric optical thermometry based on Sr2LaF7:Er3+ crystal-implanted pliable fibers'. Together they form a unique fingerprint.Projects
- 1 Finished
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GRF: Rare Earth Doped Core-shell Structure Bismuth Vanadate Nanofibers with Enhanced Photocatalytic Performance
PUN, Y. B. E. (Principal Investigator / Project Coordinator) & LIN, H. (Co-Investigator)
1/01/20 → 3/12/24
Project: Research