Issue 33, 2022

Optical temperature sensing properties and thermoluminescence behavior in Er-modified potassium sodium niobate-based multifunctional ferroelectric ceramics

Abstract

The use of multifunctional materials that exhibit integration/coupling effects among different properties has recently become the research hotspot with the development of a high-tech optoelectronic technology. In this work, we report the multifunctional characteristics with upconversion luminescence, thermoluminescence, and ferroelectric properties of potassium sodium niobate (KNN)-based ferroelectric ceramics. A host KNN-based material was constructed using Er3+ regulation, boosting the electrical properties and activating the luminescence properties of the host. After Er3+ doping, the ceramics exhibited fatigue-resistant and temperature-insensitive ferroelectric/strain properties. Moreover, the Er3+-modified samples showed bright upconversion photoluminescence, simultaneously exhibiting thermoluminescence behavior. High-temperature sensing with a sensitivity of S = 0.0061 K−1 was achieved in the sample doped with 0.5%mol Er3+. In addition, thermoluminescence behavior was observed in this sample, closely related to the concentration of defects inside the ceramics. As multifunctional materials, Er3+-doped KNN-based ferroelectrics may enable novel applications in the field of optoelectronic devices.

Graphical abstract: Optical temperature sensing properties and thermoluminescence behavior in Er-modified potassium sodium niobate-based multifunctional ferroelectric ceramics

Supplementary files

Article information

Article type
Paper
Submitted
29 Mar 2022
Accepted
06 Jun 2022
First published
09 Jun 2022

J. Mater. Chem. C, 2022,10, 11891-11902

Optical temperature sensing properties and thermoluminescence behavior in Er-modified potassium sodium niobate-based multifunctional ferroelectric ceramics

W. Li, D. Wang, X. Li, P. Li, P. Fu, C. Hu, J. Hao, W. Li and Q. Zhang, J. Mater. Chem. C, 2022, 10, 11891 DOI: 10.1039/D2TC01268E

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