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Cation Engineering-Regulated Sr(AlGa)Si2O8:Er3+/Yb3+ Phosphor Enables High-Performance Optical Temperature Sensing and Information Anticounterfeiting Encryption

delete2026-08-11
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PRE
AI
Y
Yuebin Xu
P
Palidan Aierken *
X
Xu Yan
M
Maohua Wang
Y
Yang Luo
L
Long Chen
Y
Yu Jiang
A
Abuduhele Maitiyusufu
H
Hairegu Tuxun *
A
Aierken Sidike *
DOI:10.1016/j.ceramint.2026.08.067delete
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Abstract

Abstract

En 中文
• A novel Sr(AlGa)Si2O8:0.01Er3+, 0.09Yb3+ upconversion phosphor was successfully prepared via cation engineering, where Ga3+ substitution for Al3+ induces lattice distortion that reduces matrix symmetry, resulting in a 10.80-fold enhancement in luminescence intensity under 980 nm excitation. • The phosphor demonstrates superior dual-mode temperature sensing performance, achieving maximum relative sensitivities of 1.503%K-1 (at 980 nm) and 9.739%K-1 (at 808 nm) in 293-493 K, outperforming most reported feldspar-based and Er3+-doped luminescent materials. • Benefiting from its unique dual-mode luminescence behavior, the phosphor enables high-security programmable encryption and multimode anticounterfeiting, providing a practical approach for developing multifunctional optical materials suitable for both harsh-environment monitoring and information security applications.

Journal

Ceramics International cover
Ceramics International
IF:
5.6
Papers:
5.0W
Citations:
15.5W

Organization

X
Xinjiang Medical University
Scholars:
8.4K
Papers: 3.9K
Citations: 3.5K
X
Xinjiang Normal University
Scholars:
2.1K
Papers: 1.0K
Citations: 822
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