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红色荧光粉Ca3Y2Si3O12:Eu3 的制备及发光特性
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四川大学材料科学与工程学院,四川大学材料学院

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O0482.31

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Preparation and Luminescence Properties of Red Phosphors Ca3Y2Si3O12:Eu3
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College of Material Science and Engineering, Sichuan University,College of Material Science and Engineering, Sichuan University

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    摘要:

    采用高温固相法合成了红色荧光粉Ca3Y2Si3O12:Eu3 。研究了Eu3 离子掺杂浓度、助熔剂及Gd3 共掺杂对荧光粉发光特性的影响。XRD检测结果显示:合成的荧光粉主晶相为Ca3Y2Si3O12,为单斜晶系。荧光光谱分析表明:硅酸盐荧光粉Ca3Y2Si3O12:Eu3 发射光谱包含两个主发射峰,峰值分别位于590nm和614nm,归属于Eu3 离子从5D0→7F1和7F2的特征跃迁。用614nm最强峰监测,得到激发光谱为一多峰宽带(200-500nm)。改变Eu3 离子掺杂浓度发现:随着掺杂量增加,荧光粉发光强度先增加后降低,最佳掺杂量为20mol%;讨论了几种助熔剂的影响: NaCl、CaF2作为助熔剂,对荧光粉的发光强度影响不大,H3BO3作为助熔剂降低荧光粉的发光强度,而NH4F能显著提高荧光粉的发光强度;Gd3 可以作为一种很好的共激活剂,敏化Eu3 离子发光。

    Abstract:

    The red phosphor Ca3Y2Si3O12:Eu3 was synthesized by the high temperature solid-state method. The Eu3 ion doping concentration, flux and Gd3 co-doping on the luminescence properties were studied. XRD analysis showed that the principal crystalline phase was Ca3Y2Si3O12, attributed to monoclinic system. Fluorescence spectroscopy showed that the emission spectrum of silicate phosphor Ca3Y2Si3O12:Eu3 consisted of two main emission peaks, located at 590nm(5D0 → 7F1) and 614nm(5D0 → 7F2). Monitored with the strongest peak of 614nm, excitation spectrum was obtained which ranged from 200 to 500nm. The results showed that the emission intensity of the phosphors firstly increased and then decreased with the increasing of the doping concentration of Eu3 ion. It is found that the optimum doping concentration of Eu3 ion was 20mol%. The influence of several kinds of fluxes was discussed that The influence of several kinds of fluxes was discussed that the phosphor emission intensity decreased by adding a certain amount H3BO3, but increased significantly by adding NH4F. There is little effect to the phosphor emission intensity by adding NaCl or CaF2. Gd3 ion could be acted as a good co-activator, improving the emission intensity of Eu3 ion.

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吴疆,张萍.红色荧光粉Ca3Y2Si3O12:Eu3 的制备及发光特性[J].稀有金属材料与工程,2016,45(4):1030~1034.[wujiang, zhangping. Preparation and Luminescence Properties of Red Phosphors Ca3Y2Si3O12:Eu3[J]. Rare Metal Materials and Engineering,2016,45(4):1030~1034.]
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  • 收稿日期:2014-05-05
  • 最后修改日期:2014-09-02
  • 录用日期:2014-10-30
  • 在线发布日期: 2016-06-02
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