无机材料学报 ›› 2015, Vol. 30 ›› Issue (2): 177-182.DOI: 10.15541/jim20140254

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硬脂酸盐熔融法合成(Y,Lu)AG:Ce荧光粉及荧光性能研究

李金生, 孙旭东, 李晓东, 刘绍宏, 朱 琦   

  1. (东北大学 材料各向异性与织构教育部重点实验室 沈阳 110819)
  • 收稿日期:2014-05-15 修回日期:2014-06-19 出版日期:2015-02-20 网络出版日期:2015-01-27
  • 作者简介:李金生(1986–), 男, 博士研究生. E-mail:jinsheng1986@163.com
  • 基金资助:
    国家自然科学基金 (50990303, 51102040);教育部科研创新项目(N120610001)

(Y, Lu)AG:Ce Phosphors Synthesized by Stearate Melting Method and Their Fluorescence Properties

LI Jin-Sheng, SUN Xu-Dong, LI Xiao-Dong, LIU Shao-Hong, ZHU Qi   

  1. (Key Laboratory for Anisotropy and Texture of Materials (Ministry of Education), Northeastern University, Shenyang 110819, China)
  • Received:2014-05-15 Revised:2014-06-19 Published:2015-02-20 Online:2015-01-27
  • About author:LI Jin-Sheng. E-mail:jinsheng1986@163.com
  • Supported by:
    National Natural Science Foundation of China (50990303, 51102040);Fundamental Research Funds for the Central Universities (Grants N120610001)

摘要:

采用硬脂酸盐熔融新方法合成了[(Y1-xLux)1-yCey]3Al5O12固溶体荧光粉(x=0’0.5, y=0.005’0.03), 并通过XRD、SEM、BET和PL-PLE等方法对该荧光粉进行了表征。结果表明, 纯相石榴石在800℃的低温下即可生成, 而不经过YAM和YAP中间相。煅烧所得[(Y1-xLux)1-yCey]3Al5O12 荧光粉具有良好的均一性和分散性, 并在455 nm蓝光激发下于544 nm附近呈现最强黄光发射。粉体的发光强度随煅烧温度升高而增大, 归因于结晶度提高和表面缺陷减少。发现Ce3+的荧光猝灭浓度为1.5%, 猝灭机制为Ce-Ce间的交换相互作用和晶格缺陷。发现发射峰位随Ce3+含量增加而红移, 而最强激发峰和发射峰随Lu3+含量增大而蓝移, 归因于Ce3+离子5d激发态能级重心移动和晶体场劈裂的共同作用。

关键词: YAG:Ce3+, Lu3+掺杂, 发光性能, 能级重心, 晶体场劈裂

Abstract:

[(Y1-xLux)1-yCey]3Al5O12 (x=0-0.5, y=0.005-0.03) garnet powders were prepared by a novel stearate melting method. The phosphor powders were analyzed by XRD, SEM, BET and PL-PLE. The results show that phase-pure garnet can be obtained upon calcination at a relatively low temperature of 800℃, without involvement of YAlO3 (YAP) and Y4Al2O9 (YAM) intermediate phases. The resultant [(Y1-xLux)1-yCey]3Al5O12 phosphor powders are well dispersed, and show the highest emission at 544 nm under excitation wavelength at 455 nm. The emission intensity increases with increasing calcination temperature, due to improved crystallinity of the powder and removal of surface defects at high temperatures. The quenching concentration of Ce3+ is found to be 1.5% and the quenching mechanism is proposed to be Ce-Ce interactions and lattice defects. PL band of the phosphor red shifts with the increase of Ce3+ content, while the strongest excitation and emission bands are blue shift with increasing Lu3+ doping, due to combination effects of centroid shift and crystal field splitting of the Ce3+ 5d energy levels.

Key words: YAG:Ce3+, Lu3+ doping, luminescence properties, energy centroid, crystal field splitting

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