Issue 10, 2026, Issue in Progress

Dual-mode optical temperature sensing using Dy3+/Sm3+ co-activated Ba2ZnSi2O7 phosphor with tuneable sensitivity

Abstract

This study reports the synthesis and characterization of a novel Ba2ZnSi2O7:Dy3+, Sm3+ phosphor designed for optical temperature sensing applications. The material was successfully prepared using a high-temperature solid-state reaction method. X-ray diffraction (XRD) confirmed a monoclinic crystal structure with high phase purity. Photoluminescence (PL) spectroscopy identified 1 mol% Sm3+ as the optimal doping concentration for efficient luminescence, and significant energy transfer from Dy3+ to Sm3+ was observed and quantified. Diffuse reflectance spectroscopy (DRS) indicated a widened bandgap due to a shift in the conduction band upon co-doping. Scanning electron microscopy (SEM) revealed an agglomerated morphology, while FTIR analysis confirmed the structural integrity of the host lattice after doping. Under 403 nm excitation, the activation energy for thermal quenching of Sm3+ emission was determined to be 0.19 eV. The fluorescence intensity ratio (IDy/ISm) displayed strong temperature dependence between 303 K and 483 K, achieving a maximum relative sensitivity of 7.19% K−1 at 403 K. Additionally, Sm3+ lifetime measurements showed a high temperature-dependent sensitivity, with a maximum of 1.10% K−1 at 303 K. These results highlight the material's excellent potential for high-performance optical temperature sensing.

Graphical abstract: Dual-mode optical temperature sensing using Dy3+/Sm3+ co-activated Ba2ZnSi2O7 phosphor with tuneable sensitivity

Supplementary files

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Article information

Article type
Paper
Submitted
04 Dec 2025
Accepted
05 Feb 2026
First published
16 Feb 2026
This article is Open Access
Creative Commons BY license

RSC Adv., 2026,16, 9180-9200

Dual-mode optical temperature sensing using Dy3+/Sm3+ co-activated Ba2ZnSi2O7 phosphor with tuneable sensitivity

Tejas, A. Princy, S. M. Moses Kennedy and S. D. Kamath, RSC Adv., 2026, 16, 9180 DOI: 10.1039/D5RA09381C

This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. You can use material from this article in other publications without requesting further permissions from the RSC, provided that the correct acknowledgement is given.

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