Synthesis of Ce-doped yttrium aluminum garnet phosphor by impinging streams co-precipitation

被引:0
作者
You-feng Li
Hong-qi Ye
Xian-da He
Kai Han
Hui Liu
机构
[1] Central South University,School of Chemistry and Chemical Engineering
来源
Journal of Central South University | 2012年 / 19卷
关键词
yttrium aluminum garnet: Ce; luminescent properties; impinging streams; co-precipitation; micromixing;
D O I
暂无
中图分类号
学科分类号
摘要
Phosphor yttrium aluminum garnet Y3Al5O12 (YAG), activated with trivalent cerium (Ce3+), was synthesized by T-tube impinging streams, T-type vortex impinging streams co-precipitation method (IS-CP) and direct co-precipitation method (D-CP), respectively. The crystallization, morphologies, particle size and particle size distribution of the phosphors obtained under different experimental conditions were studied. The influence of various factors on the luminescence intensity of the phosphor was also investigated, such as feeding methods, volume flow rate, contents of Ce and initial reactant concentration. The results show that the precursors synthesized by T-tube impinging streams co-precipitation reaction transform to Y3Al5O12 (YAG) phosphor at about 1 000 °C. The particles are far smaller and narrower than those prepared by D-CP. In the impinging streams co-precipitation system, the luminescent intensity of YAG:Ce phosphor increases with the increase of liquid flow rate. The intensity firstly increases then decreases with the increasing Ce3+ doping content, and the maximum intensity is shown at 1.67% (molar fraction) Ce. Luminescent intensity gradually decreases with the increase of initial concentration of reactants. At the same operational condition, the luminescent intensity of the phosphors prepared by T-tube impinging streams reactor is higher than that by D-CP, and the luminescent intensity of the phosphors prepared by T-type vortex impinging streams is higher than that by T-tube impinging streams reactor.
引用
收藏
页码:324 / 330
页数:6
相关论文
共 80 条
  • [1] Zhang Y.-m.(2008)Synthesis of YAG by the co-precipitation method [J] Ceramics International 7 1-5
  • [2] Yu H.-ming.(2004)Synthetic optimization of Li [Ni Electrochimica Acta 50 939-948
  • [3] Lee M. H.(1958)Co Chemical Engineering Science 8 93-101
  • [4] Kang Y. J.(2009)Mn AIChE J 55 2024-2034
  • [5] Myung S. T.(2002)]O Chemical Communications 2 1462-1463
  • [6] Danckwerts P. V.(2004) via co-precipitation [J] Materials Letters 58 3229-3231
  • [7] Guo S.-c.(2005)The effect of incomplete mixing on homogeneous reactions [J] Ind Eng Chem Res 44 5500-5507
  • [8] Evans D. G.(2005)Experimental and numerical investigation of the precipitation of barium Sulfate in a rotating liquid film reactor [J] Org Proc Res Dev 9 188-192
  • [9] Li D.-q.(2005)Preparation of titania particles utilizing the insoluble phase interface in a microchannel reactor [J] Nano Letters 5 685-691
  • [10] Duan X.(2008)Hydrothermal synthesis of ZnO nanocrystals using microreactor [J] Chem Eng J 135 209-215