• Laser & Optoelectronics Progress
  • Vol. 59, Issue 15, 1516012 (2022)
Ke Jia1, Jiahui Zeng2, Tiantian Han1、3, Juntao Yu1, Miaochun Wu1, Xi Cheng1, Yufeng Wen1, and Xinyuan Sun1、*
Author Affiliations
  • 1School of Mathematics and Physics, Jinggangshan University, Ji'an 343009, Jiangxi , China
  • 2School of Resources, Environment and Materials, Guangxi University, Nanning 530004, Guangxi , China
  • 3Key Laboratory of Rare Earth Luminescence Materials and Devices of Jiangxi Province, Jiangxi University of Science and Technology, Ganzhou 341000, Jiangxi , China
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    DOI: 10.3788/LOP202259.1516012 Cite this Article Set citation alerts
    Ke Jia, Jiahui Zeng, Tiantian Han, Juntao Yu, Miaochun Wu, Xi Cheng, Yufeng Wen, Xinyuan Sun. Luminescent Performance Study on Dy3+-Doped, Tb3+-Doped and Tb3+/Dy3+ Codoped TeO2-GeO2-BaO Glasses[J]. Laser & Optoelectronics Progress, 2022, 59(15): 1516012 Copy Citation Text show less
    References

    [1] Jha A, Richards B, Jose G et al. Rare-earth ion doped TeO2 and GeO2 glasses as laser materials[J]. Progress in Materials Science, 57, 1426-1491(2012).

    [2] Li Y, Liao M S, Xue T F et al. Research progress of mid-infrared supercontinuum in soft glass fiber[J]. Laser & Optoelectronics Progress, 55, 080001(2018).

    [3] Kaky K M, Sayyed M I, Mhareb M H A et al. Physical, structural, optical and gamma radiation attenuation properties of germanate-tellurite glasses for shielding applications[J]. Journal of Non-Crystalline Solids, 545, 120250(2020).

    [4] Marczewska A, Środa M. Spectroscopic and thermal study of a new glass from TeO2Ga2O3GeO2 system[J]. Journal of Molecular Structure, 1164, 100-108(2018).

    [5] Sayyed M I, Mhareb M H A, Abbas Z Y et al. Structural, optical, and shielding investigations of TeO2-GeO2-ZnO-Li2O-Bi2O3 glass system for radiation protection applications[J]. Applied Physics A, 125, 1-8(2019).

    [6] Gao S, Liu X Q, Kang S et al. 2-3 μm emission and fluorescent decaying behavior in Ho3+-doped tellurium germanate glass[J]. Optical Materials, 53, 44-47(2016).

    [7] Deng C B, Zhang M, Lan T et al. Spectroscopic investigation on Eu3+-doped TeO2-Lu2O3-WO3 optical glasses[J]. Journal of Non-Crystalline Solids, 554, 120565(2021).

    [8] Wang X X, Huang L H, Zhao S L et al. Luminescence properties of Tb3+ doped high density germanate scintillating glasses[J]. Chinese Journal of Luminescence, 39, 115-120(2018).

    [9] Rao V H, Prasad P S, Babu K S. Visible luminescence characteristics of Pr3+ ions in TeO2-Sb2O3-WO3 glasses[J]. Optical Materials, 101, 109740(2020).

    [10] Ersundu A E, Büyükyıldız M, Ersundu M Ç et al. The heavy metal oxide glasses within the WO3-MoO3-TeO2 system to investigate the shielding properties of radiation applications[J]. Progress in Nuclear Energy, 104, 280-287(2018).

    [11] Poirier G, Ottoboni F S, Cassanjes F C et al. Redox behavior of molybdenum and tungsten in phosphate glasses[J]. The Journal of Physical Chemistry B, 112, 4481-4487(2008).

    [12] Liu B, Kong L J, Shi C S. White-light long-lasting phosphor Sr2MgSi2O7: Dy3+[J]. Journal of Luminescence, 122/123, 121-124(2007).

    [13] Sontakke A D, Biswas K, Annapurna K. Concentration-dependent luminescence of Tb3+ ions in high calcium aluminosilicate glasses[J]. Journal of Luminescence, 129, 1347-1355(2009).

    [14] Li Y C, Chang Y S, Lai Y C et al. Luminescence and energy transfer properties of Gd3+ and Tb3+ in LaAlGe2O7[J]. Materials Science and Engineering: B, 146, 225-230(2008).

    [15] Xiao W G, Liu X F, Zhang J H et al. Realizing visible light excitation of Tb3+ via highly efficient energy transfer from Ce3+ for LED-based applications[J]. Advanced Optical Materials, 7, 1801677(2019).

    [16] Sun X Y, Han T T, Wu D L et al. Investigation on luminescence properties of Dy3+-, Eu3+-doped, and Eu3+/Dy3+-codoped SrGd2O4 phosphors[J]. Journal of Luminescence, 204, 89-94(2018).

    [17] Wang F, Liu D C, Yang B et al. Influence of Dy3+ coactivator on the luminescence properties of Gd2O2S: Tb3+ phosphor[J]. Journal of Applied Physics, 111, 023101(2012).

    [18] Thangavelu K, Rao T D, Srinivas A et al. Effect of local strain fields on the structural, Néel transition temperature and long range ferroelectric ordering in rare earth substituted Bi0.9R0.1FeO3 multiferroic ceramics (where, R=Gd3+, Tb3+, Dy3+)[J]. Journal of Materials Science: Materials in Electronics, 26, 8676-8687(2015).

    [19] Fang L Z, Zhou X, Zhang J L et al. Control of white light emission via co-doping of Dy3+ and Tb3+ ions in LiLuF4 single crystals under UV excitation[J]. Journal of Materials Science: Materials in Electronics, 31, 3405-3414(2020).

    [20] Sun X Y, Yu X G, Jiang D G et al. Spectroscopic and energy transfer properties of Dy3+-doped, Tb3+/Dy3+-codoped dense oxyfluoride borogermanate scintillating glasses[J]. Journal of Applied Physics, 119, 233103(2016).

    [21] Sun X Y, Lin L W, Wu Y T et al. Enhanced Ce3+ emission in B2O3-GeO2-Gd2O3 scintillating glasses induced by melting temperature[J]. Optical Materials Express, 5, 920-925(2015).

    [22] Han T T, Sun X Y, Yu J T et al. Optical properties of Dy2O3, Tb4O7 singly doped, Dy2O3/Tb4O7 codoped borogermanate-tellurite glasses for radiation application[J]. Journal of Luminescence, 244, 118737(2022).

    [23] Guo H, Li F, Wei R F et al. Elaboration and luminescent properties of Eu/Tb co-doped GdPO4-based glass ceramics for white LEDs[J]. Journal of the American Ceramic Society, 95, 1178-1181(2012).

    [24] Wantana N, Ruangtaweep Y, Kaewnuam E et al. Development of WO3-Gd2O3˗B2O3 high density glasses doped with Dy3+ for photonics and scintillation materials application[J]. Solid State Sciences, 101, 106135(2020).

    [25] Sun X Y, Wen Z X, Liu X J et al. Superdense Tb3+-activated borogermanate-tellurite scintillating glasses[J]. Journal of the American Ceramic Society, 102, 896-900(2018).

    [26] Xia Z G, Liu R S. Tunable blue-green color emission and energy transfer of Ca2Al3O6F: Ce3+, Tb3+ phosphors for near-UV white LEDs[J]. The Journal of Physical Chemistry C, 116, 15604-15609(2012).

    Ke Jia, Jiahui Zeng, Tiantian Han, Juntao Yu, Miaochun Wu, Xi Cheng, Yufeng Wen, Xinyuan Sun. Luminescent Performance Study on Dy3+-Doped, Tb3+-Doped and Tb3+/Dy3+ Codoped TeO2-GeO2-BaO Glasses[J]. Laser & Optoelectronics Progress, 2022, 59(15): 1516012
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