无机材料学报

• 研究论文 • 上一篇    下一篇

CaS:TmF3粉末蓝色发光材料的制备

孙甲明; 钟国柱; 范希武; 郑陈玮; Gerd.O.Mueller+; ReginaMuller-Mach+   

  1. 中国科学院长春物理研究所, 激发态物理开放实验室 长春130021; +Hewlett Packard Laboratories, Electroluminescent Technoloty Department, 49001 Lakeview Bowlevard Fremont, CA 94538, USA.

  • 收稿日期:1997-05-12 修回日期:1997-07-09 出版日期:1998-06-20 网络出版日期:1998-06-20

Preparation of CaS:TmF3 Phosphor

SUN Jia-Ming; ZHONG Guo-Zhu; FAN Xi-Wu; ZHENG Chen-Wei; Gerd.O.Mueller+; ReginaMuller-Mach+   

  1. Changchun Institute of Physics, Chinese Academy of Sciences ,Laboratory of Excited States, Chinese Academy of Sciences Changchun 130021 China;
    +Hewlett Packard Laboratory, Electroluminescent Technology Department, 49001 Lakeview Bowlevard Fremont, CA 94538 USA

  • Received:1997-05-12 Revised:1997-07-09 Published:1998-06-20 Online:1998-06-20

摘要:

本文研究了S+H2,S;H2S+H2;H2S,S+H2S和S+H2S十H2等不同气氛下用CaCO3硫化法制备的CaS粉末中的CaSO4和CaO杂质相的含量与反应气氛和反应方法的关系.X射线衍射分析表明,CaSO4和CaO杂质相的含量与反应气氛有密切的联系.CaS粉末中F中心(带两个正电荷的S空位俘获一个电子)的数量与反应原材料和CaSO4和CaO杂质相的含量有关.光致发光的激发光谱表明,在CaS:TmF3发光粉末中存在由Tm3+离子发光中心向F中心的能量传递,CaS粉末大量的F中心的存在不利于CaS:TmF3蓝色发光效率的提高.通过对不同气氛下制备的CaS粉末F中心、CaSO4和CaO杂质相的含量进行分析和比较,找到了制备适用于CaS:TmF3发光材料的CaS粉末的最佳方法.

关键词: CaS, X射线衍射, F中心, 光致发光

Abstract: This paper studied the preparation of CaS powders by sulfurizing CaCO3 in different atmosphere such as S+N2, S+air, H2S+H2, H2S, S+H2S and S+H2S+H2 with different
reactive methods. The formation of impurity phases such as CaSO4 and CaO depends strongly on the sulfurizing atmospheres. The amount of F^+ vacancies and the influence of F+
vacancies on the blue luminescence of CaS:TmF3 phosphor were studied by photoluminescent (PL) and photoluminescent excitation spectra (PLE). It is concluded that CaS powders
containing large amount of F+ vacancies are not suitable for preparation of efficient CaS:TmF3 phosphor because of the energy transfer from host and Tm3+ luminescent centers to the F+
vacancies. The qualified CaS powder for CaS:TmF3 phosphor was prepared by sulfurizing CaCO3 in S+H2S atmosphere.

Key words: calcium sulfied, X-ray diffraction, F+ center, photoluminescence

中图分类号: