Issue 16, 2021

Constructing sensitive luminescent thermometers via energy transfer in Ce3+ and Eu2+ co-doped Ca8Mg3Al2Si7O28 phosphors

Abstract

In this study, Ce3+ and Eu2+ co-doped Ca8Mg3Al2Si7O28 phosphors are designed and synthesized for applications in highly sensitive optical thermometry. The host structure is determined by Rietveld refinement based on powder X-ray diffraction (P-XRD) data. The site-dependent luminescence of Ce3+ and Eu2+ is discussed on the basis of the Ca8Mg3Al2Si7O28 structure and low-temperature VUV-UV spectra. Doublet emission bands of Ce3+ are located at ∼376 and ∼399 nm, and the emission band of Eu2+ is located at ∼536 nm. Due to energy transfer and different thermal behaviors of Ce3+ and Eu2+ luminescence, the emission color of Ca8Mg3Al2Si7O28:Ce3+,Eu2+ is tunable with different doping levels and temperatures under excitation at 320 nm. The energy transfer mechanism between Ce3+ and Eu2+ is analyzed by the Inokuti–Hirayama model. The ratiometric fluorescence intensity of Eu2+ to Ce3+ is applied to denote the variation of temperature, and provides sensitivity to the temperature readout. Series of temperature-dependent measurements indicate that the Ca7.97Ce0.01Na0.01Eu0.01Mg3Al2Si7O28 phosphor is a promising candidate for optical thermometric applications.

Graphical abstract: Constructing sensitive luminescent thermometers via energy transfer in Ce3+ and Eu2+ co-doped Ca8Mg3Al2Si7O28 phosphors

Supplementary files

Article information

Article type
Research Article
Submitted
08 Apr 2021
Accepted
28 May 2021
First published
02 Jun 2021

Mater. Chem. Front., 2021,5, 6071-6081

Constructing sensitive luminescent thermometers via energy transfer in Ce3+ and Eu2+ co-doped Ca8Mg3Al2Si7O28 phosphors

R. Zhou, L. Lin, H. Zhao, T. Deng and J. Li, Mater. Chem. Front., 2021, 5, 6071 DOI: 10.1039/D1QM00555C

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