荧光粉
色度
发光
材料科学
分析化学(期刊)
青色
大气温度范围
荧光
猝灭(荧光)
重复性
温度计
橙色(颜色)
热的
强度(物理)
光电子学
灵敏度(控制系统)
衍射
光致发光
激发
兴奋剂
矿物学
作者
Xinyuan Zhou,Yuyue Liang,Wenhui Dai,Xingyu Zhao,Lina Wang,Fangfang Hu,Hai Guo
摘要
Abstract There is a tremendous demand for noncontact temperature sensing technologies due to their fast response and accurate testing. In this work, Ba 3 LaNb 3 O 12 :Sm 3+ /g‐C 3 N 4 mixed phosphors with various compositional ratios were synthesized via a high‐temperature solid‐state reaction. Over the temperature range of 313–573 K, the luminescent intensity of g‐C 3 N 4 exhibited a decreasing trend. In contrast, the luminescent intensity of Ba 3 LaNb 3 O 12 :Sm 3+ demonstrates an antithermal quenching phenomenon due to the high structural rigidity of Ba 3 LaNb 3 O 12 . To achieve high temperature sensitivity, Ba 3 LaNb 3 O 12 :0.08Sm 3+ and g‐C 3 N 4 were mixed at an optimal 15:1 ratio, leveraging their contrasting thermal responses. The composite exhibits tunable emission, with its color shifting from cyan to orange as the temperature rises. This property enables a dual‐mode temperature sensing based on fluorescence intensity ratio (FIR) and Commission Internationale de l'Éclairage (CIE) chromaticity coordinates, achieving maximum relative sensitivities of 1.63% K −1 at 313 K and 0.34% K −1 at 573 K, respectively. Besides, the repeatability of the optimal mixed phosphors reaches 98% across variable temperature cycles. These results indicate that the Ba 3 LaNb 3 O 12 :Sm 3+ /g‐C 3 N 4 mixed phosphor exhibits high sensitivity and exceptional repeatability, demonstrating its potential for application in self‐calibrated optical thermometry.
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