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掺铈、钆、铽的三磷酸镧的合成及其光谱
引用本文:洪广言,高信,刘书珍,王文韵,李有谟.掺铈、钆、铽的三磷酸镧的合成及其光谱[J].发光学报,1994,15(1):26-32.
作者姓名:洪广言  高信  刘书珍  王文韵  李有谟
作者单位:中国科学院长春应用化学研究所, 长春130022
基金项目:国家自然科学基金资助项目,长春物理所激发态开放实验室资助项目
摘    要:本文首次采用溶液沉淀法合成了一系列LaP3O9:Ce、Gd、Tb磷光体.经X射线结构分析表明、它们是较纯的LaP3O9相,系环状结构,属于正交晶系,其晶胞参数为a=11.19(Å),b=8.54(Å),c=7.28(Å).测定了这些化合物的激发和发射光谱、相对亮度及Ce3+的荧光寿命,观察到在此基质中Ce3+与Gd3+光谱重叠,它们之间存在着一定的相互作用,Ce3+能有效地敏化Tb3+,从而大大地增强Tb3+的发射,LaP3O9:Ce、Tb可能成为一种新的高效绿色发光材料.在Ce-Tb共掺的体系中加入少量Gd却使发光亮度稍有下降,这可能是由于Gd3+的竞争吸收和独立发射所致.从Ce3+的荧光寿命变化可知,Ce3+对Gd3+的能量传递较弱,而Ce3+对Tb3+则很有效.

关 键 词:LaP3O9  Ce、Gd、Tb  Ce3+发光  Gd3+发光  Tb3+发光  能量传递
收稿时间:1993-03-25

THE SYNTHESIS AND SPECTRA OF LaP_3O_9:Ce,Gd,Tb
Hong Guangyan Gao Xin Liu Shuzhen Wang Wenyun Li Youmo.THE SYNTHESIS AND SPECTRA OF LaP_3O_9:Ce,Gd,Tb[J].Chinese Journal of Luminescence,1994,15(1):26-32.
Authors:Hong Guangyan Gao Xin Liu Shuzhen Wang Wenyun Li Youmo
Institution:Changchun Institute of Applied Chemistry, The Chinese Academy of Sciences Changchan 130022
Abstract:A series of LaP3O2: Ce,Gd,Tb phosphors have been prepared by a solution-precipitation method. X-ray structural analysis showed that they are fairly pure LaP3O9 phase, with a cyclic-(PO3)3-structure, belonging to orthorhombic syngong;with cell parameters a= 11. 19,6=8.54,c=7.28A, Their excitation and emission spectra,relative brightness and the luminescence lifetime of Ce3+ have been measured. It was observed that the spectra of Ce3+ overlaps with that of Gd,showing that there is some interaction in energy between these two ion;and Ce3+ can effectively sensitize Tb3+, so as to enhance the emission of Tb3+ significantly. LaP3O9:Ce,Tb might be a new high efficient green emitting phosphor. Adding a small amount of Gd to Ce,Tb codoped LaP3O9 led to the lowering of the emission brightness to a certain extent. This might be due to the competition absoption by Gd3+. From the luminescence lifetime of Ce3+ it can be inferred that the energy transfer from Ce3+ to Gd3+ is weak,whereas that from Ce3+ to Tb3+ is very efficient.
Keywords:LaP3O9:Ce  Gd  Tb  Ce3+ luminescence  Gd3+ luminescence  Tb3+ luminescence  energy transfer
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