Giant enhancement of anti-quenching upconversion luminescence in Sc2W3O12:Er3+/Yb3+ phosphors for temperature sensing

被引:2
|
作者
Wang, Xufang [1 ]
Zhang, Ping [1 ]
Xiao, Xianglong [1 ]
Lei, Ruoshan [1 ]
Huang, Lihui [1 ]
Xu, Shiqing [1 ]
Zhao, Shilong [1 ]
Wang, Xiuli [2 ]
机构
[1] China Jiliang Univ, Inst Optoelect Mat & Devices, Key Lab Rare Earth Optoelect Mat & Devices Zhejian, Hangzhou 310018, Peoples R China
[2] Hangzhou Normal Univ, Coll Mat Chem & Chem Engn, Hangzhou 311121, Peoples R China
基金
中国国家自然科学基金;
关键词
NEGATIVE THERMAL-EXPANSION; A(2)M(3)O(12) FAMILY; MORPHOLOGY EVOLUTION; ENERGY-TRANSFER; BEHAVIOR; PHOTOLUMINESCENCE; NANOCRYSTALS; EMISSION;
D O I
10.1039/d4tc01673d
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Although negative thermal expansion (NTE) materials provide a new strategy to overcome the thermal-quenching phenomenon among rare earth doped luminescent materials, the overall weak upconversion luminescence still restricts their application in the field of optical temperature sensing. Herein, giant enhancement of anti-quenching upconversion luminescence is achieved in the NTE Sc2W3O12:Er3+/Yb3+ phosphors by (KMg)(3+) impurity doping, and the phosphors are used for the construction of an all-fiber temperature sensing (AFTS) system. Compared to the upconversion luminescence of the Sc2W3O12:Er3+/Yb3+ phosphors at room temperature, the synergistic effect of impurity doping and NTE characterstics results in a 6000-fold enhancement of the upconversion luminescence of the (KMg)(3+) doped Sc2W3O12:Er3+/Yb3+ phosphors at 573 K. A single-point tip temperature sensor was constructed based on the fluorescence luminescence intensity ratio (FIR) technology and the corresponding self-calibrated curves were obtained with a regression coefficient of 0.9996. The potential application of the constructed AFTS system was demonstrated in the real-time temperature monitoring of a CPU chip and a thermostat bath.
引用
收藏
页码:8977 / 8986
页数:10
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