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Multiple optical thermometry and dynamic anti-counterfeiting based on multicolor luminescence of SrY2O4:Bi3+,Er3+ phosphor

CERAMICS INTERNATIONAL [2024]
Qingqing Yu, Fumin Lu, Ligan Ma, Peican Dai, Fangfang Hu, Hai Guo, Rongfei Wei
ABSTRACT

Multifunctional materials with optical temperature sensing and anti-counterfeiting properties have vast application prospects in our daily life, but the development of them still faces huge challenges. Herein, a novel SrY 2 O 4 :Bi 3+ ,Er 3+ phosphor with multicolor luminescence was synthesized triumphantly. Stimulated by different ultraviolet (UV) lights, the sample exhibits blue or green emissions, while emits yellow up-conversion luminescence under 980 nm laser irradiation. Interestingly, abnormal thermal quenching and thermal stimulation enhanced persistent luminescence are realized in SrY 2 O 4 :Bi 3+ ,Er 3+ . Benefiting from the distinct responses of Bi 3+ and Er 3+ luminescence to temperature, thermochromism is verified when excited by UV or 980 nm light. Furthermore, the color shift from yellow-green to dark yellow is seen as the 980 nm laser power density reduces or the distance between laser source and the sample increases. Based on the luxuriant luminescence properties, multimode optical temperature sensing and dynamic anti-counterfeiting are constructed. All findings indicate that the multicolor emissive SrY 2 O 4 :Bi 3+ ,Er 3+ material offers a fresh outline for the exploitation of multiple optical thermometry and anti-counterfeiting.

MATERIALS

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