• Laser & Optoelectronics Progress
  • Vol. 59, Issue 15, 1516022 (2022)
Chao Liu1, Man Yu1, Xueyun Liu1、2、*, and Peng Zhao1、3
Author Affiliations
  • 1Key Laboratory of Photoelectric Materials and Devices, The Research Institute of Advanced Technology, Ningbo University, Ningbo 315211, Zhejiang , China
  • 2Engineering Research Center for Advanced Infrared Photoelectric Materials and Devices, Ningbo University, Ningbo 315211, Zhejiang , China
  • 3Ningbo Institute of Oceanography, Ningbo 315832, Zhejiang , China
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    DOI: 10.3788/LOP202259.1516022 Cite this Article Set citation alerts
    Chao Liu, Man Yu, Xueyun Liu, Peng Zhao. Optical Thermometry Based on Transparent KLu2F7∶Er3+/Yb3+-Nanostructural Glass-Ceramics[J]. Laser & Optoelectronics Progress, 2022, 59(15): 1516022 Copy Citation Text show less
    References

    [1] Zhao Y C, Xiao H N, He F K. Present and future of glass ceramics material[J]. China Ceramics, 37, 40-43(2001).

    [2] Wu J L. Study on up-conversion luminescence properties of rare earth ion doped microcrystals[J]. Laser & Optoelectronics Progress, 59, 0716001(2022).

    [3] Gao Z G, Xiao J, Ren J. Progress in luminescent ions-doped photonic glasses containing dual-phase nanocrystals[J]. Laser & Optoelectronics Progress, 58, 1516016(2021).

    [4] Hua J T, Chen B J, Sun J S et al. Introduction to up-conversion luminescence of rare earth doped materials[J]. Chinese Journal of Optics and Applied Optics, 3, 301-309(2010).

    [5] Li P P. Study on temperature sensing mechanism of rare earth doped up-conversion luminescent materials based on fluorescence intensity ratio[D](2019).

    [6] Zhang H J, Dong X B, Peng K et al. Upconversion luminescence and temperature sensing property of LaNbO4∶Tm, Yb phosphor[J]. New Chemical Materials, 48, 263-266(2020).

    [7] Li X M. Fabrication, up-conversion luminescence and temperature sensing of erbium ions doped oxyfluoride glass ceramics[D](2015).

    [8] Wang X F, Liu Q, Cai P Q et al. Excitation powder dependent optical temperature behavior of Er3+ doped transparent Sr0.69La0.31F2.31 glass ceramics[J]. Optics Express, 24, 17792-17804-17804(2016).

    [9] Li X M, Cao J K, Hu F F et al. Transparent Na5Gd9F32∶Er3+ glass-ceramics: enhanced up-conversion luminescence and applications in optical temperature sensors[J]. RSC Advances, 7, 35147-35153(2017).

    [10] Zhao Z M. Optical temperature sensing investigation based on fluoride doped with rare earth ions[D](2020).

    [11] Jiang S, Zeng P, Liao L Q et al. Optical thermometry based on upconverted luminescence in transparent glass ceramics containing NaYF4∶Yb3+/Er3+ nanocrystals[J]. Journal of Alloys and Compounds, 617, 538-541(2014).

    [12] Gu J Y. Optical temperature sensing using upconversion fluorescence emission in Tm3+, Yb3+ Co-doped NaLuF4 nanocrystals[D](2015).

    [13] Chen W P, Hu F F, Wei R F et al. Optical thermometry based on up-conversion luminescence of Tm3+ doped transparent Sr2YF7 glass ceramics[J]. Journal of Luminescence, 192, 303-309(2017).

    [14] Wu T. Preparation and optical temperature sensing properties of Er3+/Yb3+ codoped oxyfluoride glass ceramics[D](2018).

    [15] Xing J H, Shang F, Chen G H. Upconversion luminescence of Yb3+/Er3+ co-doped NaSrPO4 glass ceramic for optical thermometry[J]. Ceramics International, 47, 8330-8337(2021).

    [16] Chen D Q, Liu S, Wan Z Y et al. A highly sensitive upconverting nano-glass-ceramic-based optical thermometer[J]. Journal of Alloys and Compounds, 672, 380-385(2016).

    [17] Bian Y L, Zhuang Y F. Upconversion luminescence and optical thermometry of Pr3+-doped KLu2F7 phosphor[J]. Journal of Materials Science: Materials in Electronics, 31, 7991-7997(2020).

    [18] Peng Y, Cheng Z Y, Khan W U et al. Enhancing upconversion emissions and temperature sensing properties by incorporating Mn2+ for KLu2F7∶Yb3+/Er3+ nanocrystals based on thermally and non-thermally coupled levels[J]. New Journal of Chemistry, 45, 3876-3885(2021).

    [19] Qi Y S, Li S, Min Q H et al. Optical temperature sensing properties of KLu2F7∶Yb3+/Er3+/Nd3+ nanoparticles under NIR excitation[J]. Journal of Alloys and Compounds, 742, 497-503(2018).

    [20] He K, Chen N F, Wang C J et al. Method for determining crystal grain size by X-ray diffraction[J]. Crystal Research and Technology, 53, 1700157(2018).

    [21] Liu X Y, Wei Y L, Wei R F et al. Elaboration, structure, and luminescence of Eu3+-doped BaLuF5-based transparent glass-ceramics[J]. Journal of the American Ceramic Society, 96, 798-800(2013).

    [22] Cao J K. Design, temperature sensing and scintillating properties of novel fluoride glass ceramics[D](2016).

    [23] Zhao P, Ye C Y, Yu M et al. Elaboration and mid-infrared emission of KYb3F10∶Er3+ nanocrystals embedded in glass ceramics[J]. Chinese Journal of Luminescence, 43, 174-181(2022).

    [24] Zhang J J, Duan Z C, He D B et al. Progress and study on rare earth ions doped oxyfluoride glass ceramics for upconversion luminescence[J]. Laser & Optronics Progress, 42, 2-7, 18(2005).

    Chao Liu, Man Yu, Xueyun Liu, Peng Zhao. Optical Thermometry Based on Transparent KLu2F7∶Er3+/Yb3+-Nanostructural Glass-Ceramics[J]. Laser & Optoelectronics Progress, 2022, 59(15): 1516022
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