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Al3+改性CaMoO4:Pr3+荧光粉的发光性能 被引量:2

Luminescence Properties of Al3+ Modified CaMoO4:Pr3+ Phosphors
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摘要 采用高温固相法合成了Al^3+掺杂的CaMoO4:Pr^3+系列荧光粉,通过X射线衍射仪(XRD)、荧光光谱仪等仪器对样品的物相、组成、结构及发光性能等进行了表征。X射线衍射结果表明,本次试验成功制备了CaMoO4:Pr^3+,Al^3+系列荧光粉,Pr^3+离子和Al^3+离子的共掺杂没有改变CaMoO4基质的晶体结构;荧光光谱表明,CaMoO4:Pr^3+,Al^3+的3P0→3H6跃迁的发光强度随Al^3+离子掺杂浓度的增加呈先增大后降低的变化趋势,当Al^3+离子掺杂浓度为0.07时,发光强度达到最大,说明添加一定量的Al^3+可以提高CaMoO4:Pr^3+材料的发光强度。 Al^3+-doped CaMoO4:Pr^3+ phosphors were synthesized by high temperature solid-state method. The phase, structure and luminescent properties of the samples were characterized by X-ray diffraction (XRD) and fluorescence spectrometer. XRD results showed that CaMoO4:Pr^3+ and Al^3+ phosphors were successfully synthesized. When Pr^3+ and Al^3+ ionswere introduced into CaMoO4 host, the crystal structuredid not change. The photoluminescence emission spectra indicated that the luminescence intensity of the transition 3P0→ 3H6 of CaMoO4:Pr^3+, Al^3+ increased first and then decreasedwith the increase of doping concentration of Al^3+ ions. When the doping concentration of Al^3+ was 0.07, the luminescence intensity reachedthe maximum, indicating that adding a certain amount of Al^3+ can improve the luminescence intensity of CaMoO4:Pr^3+ phosphors.
作者 韩亚洁 史磊 刘涵 张志伟 HAN Yajie;SHI Lei;LIU Han;ZHANG Zhiwei(College of Chemical Engineering,Hebei Normal University of Science & Technology,Qinhuangdao Hebei,066600,China)
出处 《河北科技师范学院学报》 CAS 2019年第2期55-59,共5页 Journal of Hebei Normal University of Science & Technology
关键词 荧光粉 CaMoO4:Pr^3+ Al^3+改性 发光性能 phosphor CaMoO4:Pr^3+ modification of Al^3+ luminescent properties
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  • 1W L Feng, Y Jin, Y Wu, et al.. Co-precipitation synthesis and photoluminescence properties of Ba1-xMoO4xEu3+ red phosphors [J]. J Lumin, 2013, 134: 614-617.
  • 2S Mahlik, M Behrendt, M Grinberg, et al.. Pressure effects on the luminescence properties of CaWO4:Pr3+[J]. Opt Mater, 2012, 34(12): 2012-2016.
  • 3J Ninkovic, G Angloher, C Bucci, et al.. CaWO4 crystal as scintillators for cryogenic dark matter search [J]. Nucl Instr Met A, 2005,537(1-2): 339-347.
  • 4G Angloher, C Bucci, G Angloher, et al.. Limits on WIMP dark matter using scintillating CaWO4 cryogenic detectors with active background suppression [J]. Astropart Phys, 2005, 23: 325-339.
  • 5M Kay, B Frazer, I Almodovar. Neutron diffraction refinement of CaWO4 [J]. J Chem Phys, 1964, 40(2): 504-506.
  • 6W L Feng. Preparation and luminescent properties of green SrAl2O4Eu2+ and blue SrAl2O4Eu2+, Gd3+ phosphors [J]. Mater Lett, 2013, 110: 91-93.
  • 7F Lei, B Yan. Hydrothermal synthesis and luminescence of CaMO4RE3+ (M=W, Mo; RE=Eu, Tb) submicro-phosphors [J]. J Solid State Chem, 2008, 181(4): 855-862.
  • 8B G Wybourne. Spectroscopic Properties of Rare Earths [M]. New York: Wiley, 1965.
  • 9K A Gschneidner, Jr, L Eyring. Handbook of the Physics and Chemistry of Rare Earths [M]. Amsterdam: Elsevier, 1996, 23.
  • 10G K Liu, B Jacquier. Spectroscopic Properties of Rare Earths in Optical Materials [M]. Springer, 2005.

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