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Sm3+, Tb3+ co-doped NaLa(MoO4)2 temperature sensing materials based on the fluorescence intensity ratio

DOI:10.1016/j.jallcom.2019.01.067 期刊:Journal of Alloys and Compounds 出版年份:2019 更新时间:2025-09-23 15:22:29
摘要: In optical temperature sensors, the method of measuring temperature based on Fluorescence Intensity Ratio (FIR) has been paid tremendous attention due to its fortissimo anti-excitation power noise and the ability of anti-signal transmission channel to transmit light unsteady [1e10]. The above method has the advantages of non-contact, resistance to high temperature, wide temperature range, quick response and being able to measure small objects. The optical temperature sensing technology based on the FIR is used to detect the temperature through detecting the ratio of emitted fluorescence intensity between a pair of specific thermal coupling energy levels related to the temperature [11e15]. The fluorescence emission efficiency of Sm3+ doped oxide in 4G5/2 energy level was quite high. Sm3+ emits bright orange-red color. Tb3+ doped oxide is the strongest fluorescence branch in emission from 5D4- 7F5 [16,17]. If the thermal-quenching trend of luminescence of Sm3+ and Tb3+ is different, the FIR will change with temperature. So FIR can be used to indicate the temperature. Therefore, intensive study of Sm3+ and Tb3+ co-doped materials has great prospects, because it can reveal broad luminescence color variability from green to red. Molybdate has chemical stability and thermal stability, rare earth ions have strong 4f-4f transition absorption and transition emission in this host. Therefore it is a wally host [18,19]. Based on the above-mentioned reasons, in this paper Sm3+, Tb3+ co-doped NaLa(MoO4)2 samples of different morphology have been prepared and studies the temperature sensing characteristics.
作者: Yao Zhu,Qingyu Meng,Wenjun Sun,Shuchen Lü
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To prepare Sm3+, Tb3+ co-doped NaLa(MoO4)2 phosphors with different morphologies and study their temperature sensing characteristics based on fluorescence intensity ratio.

The Sm3+, Tb3+ co-doped NaLa(MoO4)2 phosphors exhibit improved temperature sensing sensitivity and relative sensitivity with increased sodium citrate content, due to enhanced defects and electron-phonon coupling. The maximum sensing sensitivity is 0.119 K-1 and relative sensitivity is 0.0193 K-1. The luminescence color changes from green to red with temperature, making it suitable for optical temperature sensing applications. The materials show good thermal stability.

The study is limited to specific molar ratios and conditions; samples with Cit3-/Re3+ = 3 were not target products and not studied further. The temperature range is from 303 K to 603 K, and the method may have constraints in other environments or with different dopants.

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