Issue 39, 2024

Mn4+-doped rare-earth-free Mg4Nb2O9 phosphors for optical temperature sensing

Abstract

In this report, rare-earth-free Mg4Nb2O9:Mn4+ phosphors were obtained through a high-temperature solid-state reaction. This work aims to investigate the photoluminescence properties of Mg4Nb2O9:Mn4+ phosphors and the temperature sensitive performance of the optimized phosphor. The crystal structure and lattice parameters as well as the effects of the dopant ions on the host structure were investigated. It should be noted that the Mg4Nb2O9 crystal is in a trigonal system P[3 with combining macron]c1. The as-prepared phosphors exhibited good thermal sensitivity, and the relative sensitivity of the optimal Mg4Nb2O9:0.004Mn4+ phosphor was calculated to be 0.48% K−1, allowing it to activate optical temperature sensing applications.

Graphical abstract: Mn4+-doped rare-earth-free Mg4Nb2O9 phosphors for optical temperature sensing

Supplementary files

Article information

Article type
Paper
Submitted
09 Jul 2024
Accepted
11 Sep 2024
First published
23 Sep 2024

Dalton Trans., 2024,53, 16303-16311

Mn4+-doped rare-earth-free Mg4Nb2O9 phosphors for optical temperature sensing

W. Xiang and J. S. Yu, Dalton Trans., 2024, 53, 16303 DOI: 10.1039/D4DT01975J

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