Issue 29, 2022

Optical fiber temperature sensor of Er3+/Yb3+ codoped LaGaO3 microcrystals with high reliability and stability

Abstract

In terms of temperature sensing, rare earth ion-doped upconversion luminescent materials have many outstanding advantages, such as anti-interference, fast response, and high sensitivity. In this work, Er3+/Yb3+-doped LaGaO3 microparticles have been prepared through a high-temperature solid-phase method. The microcrystals show excellent upconversion luminescence and temperature sensing under 980 nm excitation. The maximum relative sensitivity is 1.1670 × 10−2 K−1, and the temperature deviation does not exceed 1.2 K. Moreover, an optical fiber temperature sensor has been developed based on rare earth ion-doped microcrystals. The fabricated sensing device could be used in monitoring human body temperature. Our experimental results suggest that the optical fiber temperature sensor constructed with Er3+/Yb3+ codoped LaGaO3 microcrystals has high precision and stability. The proposed sensing device has a wide range of application prospects in temperature detection.

Graphical abstract: Optical fiber temperature sensor of Er3+/Yb3+ codoped LaGaO3 microcrystals with high reliability and stability

Supplementary files

Article information

Article type
Paper
Submitted
10 Apr 2022
Accepted
11 Jun 2022
First published
13 Jul 2022

J. Mater. Chem. C, 2022,10, 10660-10668

Optical fiber temperature sensor of Er3+/Yb3+ codoped LaGaO3 microcrystals with high reliability and stability

H. Xu, Y. Lian, Z. Lu, I. Kolesnikov, Y. Zhao, K. He, Z. Su, G. Bai and S. Xu, J. Mater. Chem. C, 2022, 10, 10660 DOI: 10.1039/D2TC01462A

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