无机材料学报

• 研究论文 • 上一篇    下一篇

微波场作用下球形亚超细CaS:Mn2+,Eu2+的快速合成

张迈生1; 臧李纳1; 严纯华2   

  1. 1. 中山大学化学与化学工程学院, 广州 510275; 2. 北京大学稀土材料化学及应用国家重点实验室, 北京 100083
  • 收稿日期:2000-02-15 修回日期:2000-04-24 出版日期:2000-10-20 网络出版日期:2000-10-20

Rapid Synthesis of Phosphor CaS:Mn2+, Eu2+ with Submicro-Scale in Microwave Field

ZHANG Mai-Sheng1; ZANG Li-Na1; YAN Chun-Hua 2   

  1. 1.School of Chemistry and Chemical Engineering; Zhongshan University; Guangzhou 510275; China;2. State Key Lab of Rare Earth Materials Chemistry and Applications; Beihing 100083; China
  • Received:2000-02-15 Revised:2000-04-24 Published:2000-10-20 Online:2000-10-20

摘要: 在微波场作用下,首次快速合成了球形亚超细尺寸的 CaS: Mn2+,Eu2+深红色荧光 体,SEM照片显示其粒径为250~400nm,并可观察到纳米粒子的团聚现象,呈现零维纳米材 料的特性.实验结果证实,Mn2+与Eu2+离子间存在着能量传递过程,因而Mn2+对Eu2+ 的发光具有明显的敏化和增强作用.

关键词: 微波场, 球形, 亚超细, 发光, 能量传递

Abstract: CaS:Mn2+, Eu2+ phosphor materials were firstly synthesized in microwave field. The materials synthesized were characterized by XRD, SEM and the fluorescent spectroscopy. The experimental results of XRD
and SEM show that the CaS:Mn2+, Eu2+ phosphors possess the crystalline structures with sphere, the mean grain sizes of phosphors are
250-400nm. The introduction of Mn2+ into CaS:Eu2+, makes the fluorescence of the CaS:Mn2+, Eu2+ phosphor efficiently
enhanced since the energy transfer from Mn2+ into Eu2+ ions. This new synthesis method compared to the traditional high temperature
solid reaction exhibits interesting features, such as rapid reactions without H2-H2S protective atmosphere, phosphors with high purity,
submicro-scale crystallines, and higher efficient luminescence.

Key words: microwave field, sphere, submicro-scale, fluorescence, energy transfer

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