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Preparation of a Core-Shell Structured Al2O3/YAG:Ce Phosphor by a Spray Drying Method and Formation Mechanism
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Preparation of a Core-Shell Structured Al2O3/YAG:Ce Phosphor by a Spray Drying Method and Formation Mechanism
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Natural Science Foundation Project of CQ , CSTC (cstc2012jjA50039, cstc2011jjB50012)

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    摘要:

    采用喷雾干燥法制备核壳结构的Al2O3/YAG:Ce荧光粉,所得样品为立方Y3Al5O12结构,球形颗粒的粒径为1~8 μm,显示出比共沉淀法高的内部量子效率。核壳结构的Al2O3/YAG:Ce荧光粉的形成机理为,起始悬浮液包含微米级的Al2O3和Y3+、Al3+、Ce3+等形成的聚阳离子,经过雾化形成小液滴,在溶剂挥发过程中,由于聚阳离子比微米级的Al2O3的迁移速度大,在颗粒间的毛细管力的作用下,自组装成为聚阳离子包裹微米级的Al2O3的核壳型结构,在850~1250 ℃时焙烧2 h,就得到了核壳型的荧光粉。

    Abstract:

    The core-shell structured Al2O3/YAG:Ce phosphor was prepared by a spray drying method. The obtained samples show cubic Y3Al5O12 structure, have a spherical shape with the size in the range of 1~8 μm and exhibit higher internal quantum yield compared to the samples prepared by co-precipitation. Based on the fact that the spray drying method can be employed to fabricate microencapsulate particles, the formation mechanism of the core-shell structured Al2O3/YAG:Ce phosphor was formulated. The slurry, which was mixed with micrometer Al2O3 particles and polycations consisting of Y3+, Al3+ and Ce3+, was atomized and shaped by the evaporation of droplets. In the process of solvent evaporation, the interparticle capillary forces make the self-assembly of polycations into the close-packed shell surrounding the Al2O3 particles, because the polycations have a bigger diffusion rate than Al2O3 particles. At last, the precursor was calcined at the temperature from 850 oC to 1250 oC for 2 h and then the core-shell structured phosphor was produced. Therefore, a novel idea for preparing core-shell structured phosphor is proposed.

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韩 涛,彭玲玲,曹仕秀,朱达川,涂铭旌,张 进. Preparation of a Core-Shell Structured Al2O3/YAG:Ce Phosphor by a Spray Drying Method and Formation Mechanism[J].稀有金属材料与工程,2014,43(10):2311~2315.[Han Tao, Peng Lingling, Cao Shixiu, Zhu Dachuan, Tu Mingjing, Zhang Jin. Preparation of a Core-Shell Structured Al2O3/YAG:Ce Phosphor by a Spray Drying Method and Formation Mechanism[J]. Rare Metal Materials and Engineering,2014,43(10):2311~2315.]
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  • 收稿日期:2013-10-25
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  • 在线发布日期: 2015-04-07
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