Effect of Tm3+ concentration on upconversion fluorescence in Y2(MoO4)3:Tm3+,Yb3+ phosphors

被引:0
|
作者
机构
[1] Li, Xiang-Ping
[2] Tong, Li-Li
[3] Cheng, Li-Hong
[4] Sun, Jia-Shi
[5] Zhang, Jin-Su
[6] Zhang, Xi-Zhen
[7] Chen, Bao-Jiu
来源
Chen, Bao-Jiu | 1600年 / Editorial Office of Chinese Optics卷 / 35期
关键词
Energy transfer - X ray diffraction - Solid state reactions - Infrared devices - High temperature applications - Quenching - Ytterbium compounds;
D O I
10.3788/fgxb20143508.0905
中图分类号
学科分类号
摘要
Tm3+/Yb3+ co-doped Y2(MoO4)3 phosphors with various Tm3+ concentrations were prepared via a traditional high temperature solid state reaction method using NH4HF2 as a flux. The microstructure analysis by means of X-ray diffraction revealed that the as-synthesized samples presented a pure phase Y2(MoO4)3. Under 980 nm excitation, intense blue, near infrared (NIR) and weak red upconversion emissions which centered at 487, 800 and 649 nm were observed, and these emissions were corresponding to the 1G4→3H6, 3H4→3H6 and 1G4→3F4 transitions of Tm3+, respectively. The upconversion luminescence mechanisms of Y2(MoO4)3:Tm3+,Yb3+ phosphors were analyzed based upon the power dependent upconversion emissions. The results show that the populations of 1G4 and 3H4 levels come from three- and two-photon energy transfer upconversion processes, respectively. The possible upconversion mechanisms for the blue, red and NIR emissions were discussed based on the energy level diagrams of Tm3+ and Yb3+. In addition, with the increase of Tm3+ concentration, all of the emission bands obviously increase firstly and then decrease, which can be attributed to the concentration quenching. Meanwhile, the intensity ratio of the blue emission and the NIR emission decreases with the increase of Tm3+ concentration.
引用
收藏
相关论文
共 50 条
  • [41] Influence of the variation Yb3+ concentration and sintering temperature in GdVO4: Tm3+/Yb3+ blue emission phosphors
    Yang, Hyun Kyoung
    Park, Sung Jun
    Park, Jin Young
    Je, Jae-Yong
    OPTIK, 2017, 131 : 475 - 482
  • [42] Upconversion Luminescence Properties of ZBLAN : Nd3+, Tm3+, Yb3+
    Yang Zhi-ping
    Du Hai-yan
    Sun Jia-yue
    Wang Wei
    SPECTROSCOPY AND SPECTRAL ANALYSIS, 2009, 29 (06) : 1489 - 1492
  • [43] Enhanced ultraviolet upconversion in YF3:Yb3+/Tm3+ nanocrystals
    Wang Guofeng
    Qin Weiping
    Wang Lili
    Wei Guodong
    Zhu Peifen
    Zhang Daisheng
    Ding Fuheng
    JOURNAL OF RARE EARTHS, 2009, 27 (02) : 330 - 333
  • [44] Yb3+, Er3+ and Tm3+ doped α-Sialon as upconversion phosphor
    Kshetri, Yuwaraj K.
    Hoon, Jeong Sang
    Kim, Tae-Ho
    Sekino, Tohru
    Lee, Soo Wohn
    JOURNAL OF LUMINESCENCE, 2018, 204 : 485 - 492
  • [45] Enhanced ultraviolet upconversion in YF3:Yb3+/Tm3+ nanocrystals
    王国凤
    秦伟平
    王丽丽
    尉国栋
    朱培芬
    张代生
    丁福恒
    Journal of Rare Earths, 2009, 27 (02) : 330 - 333
  • [46] Upconversion energy transfer in Yb3+/Tm3+ doped tellurite glass
    Zmojda, J.
    Dorosz, D.
    Kochanowicz, M.
    Dorosz, J.
    OPTICAL FIBERS AND THEIR APPLICATIONS 2011, 2011, 8010
  • [47] Yb3+ sensitized Tm3+ upconversion in tellurite lead oxide glass
    Mohanty, Deepak Kumar
    Rai, Vineet Kumar
    Dwivedi, Y.
    SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 2012, 89 : 264 - 267
  • [48] Energy transfer and upconversion in Tm3+ and Yb3+ codoped ZBLAN glass
    Department of Physics, Nankai University, Tianjin 300071, China
    Wuli Xuebao, 12 (2459-2460):
  • [49] Effect of reactants concentration on NaYF4:Yb3+, Tm3+ crystalline phase
    Chen Z.
    Liu Z.-Y.
    Zhao D.
    Qin W.-P.
    Faguang Xuebao/Chinese Journal of Luminescence, 2011, 32 (09): : 853 - 857
  • [50] Upconversion Luminescent Properties of YVO4:Tm3+,Ho3+,Yb3+
    Sun, Jiayue
    Zhu, Jicheng
    Zeng, Junhui
    Xia, Zhiguo
    Du, Haiyan
    PROGRESS IN NEW MATERIALS AND MECHANICS RESEARCH, 2012, 502 : 132 - +