无机材料学报

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发光二极管用荧光材料Sr2CeO4:Sm3+的合成及其发光特性

焦海燕, 王育华, 张加驰   

  1. 兰州大学物理科学与技术学院功能与环境材料研究所, 兰州 730000
  • 收稿日期:2007-06-06 修回日期:2007-08-24 出版日期:2008-05-20 网络出版日期:2008-05-20

Synthesis and Luminescent Characteristics of Sr2CeO4:Sm3+ Phosphors for Light-emitting Diode

JIAO Hai-Yan, WANG Yu-Hua, ZHANG Jia-Chi   

  1. Department of Materials Science, College of Physical Science and
    Technology, Lanzhou University, Lanzhou 730000, China
  • Received:2007-06-06 Revised:2007-08-24 Published:2008-05-20 Online:2008-05-20

摘要: 以具有一维结构的Sr2CeO4化合物为研究对象、Sm3+作为发光中心, 探索了其作为LED用荧光材料的可能性. 用高温固相法于1200℃、6h合成了Sr2CeO4:Sm3+系列单相粉末样品, 并研究了其发光性质. 结果表明, 在365nm激发下, 从荧光光谱中可以看出存在从基质向稀土离子的能量转移. 通过调节荧光材料Sr2CeO4:Sm3+中稀土离子Sm3+的掺杂浓度, 可以调谐发光体的发光颜色, 当Sm3+离子浓度较小(<3%)时, 体系发出很强的白光; 当Sm3+离子浓度较大(3%~15%)时, 体系发出红光. 测量了荧光材料的色坐标, 发现Sr2CeO4:1%Sm3+的色坐标是(0.334,0.320), 接近于纯白色(0.33,0.33), 可以作为一种新型的UV-LED用单一白色荧光材料.

Abstract: The trivalent samarium doped Sr2CeO4 color-tunable phosphors were successfully synthesized by solid state reaction at 1200℃ for 6h and their luminescent characteristics were studied. The results indicate that the host can transfer its exciting energy to rare earth ion Sm3+ when excited with 365nm light. The emission color can be changed by tuning activator’s concentration in Sr2CeO4:Sm3+ phosphors. The doped compound emits strong white light when the concentration of the doped Sm3+ is lower than 3%. When the Sm3+ concentration is increased from 3% to 15%, it emits red light. The chromaticity coordinate of Sr2CeO4: 1% Sm3+ phosphor is measured
to be (x, y) (0.334, 0.320), which is closed to the pure white (0.33, 0.33). It shows that Sr2CeO4: 1% Sm3+ phosphor is a promising single white phosphor for ultraviolet light-emitting diode.

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