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A polymer solution process for synthesis of (Y,Gd)(3)Al5O12 : Ce phosphor particles

机译:合成(Y,Gd)(3)Al5O12:Ce荧光粉颗粒的聚合物溶液工艺

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摘要

Cerium-doped yttrium-gadolinium aluminum garnet, (Y,Gd)(3)Al5O12:Ce, shortened here to (Y,Gd)AG:Ce, was systematically prepared by a polymer complex method, using high molecular weight polyethylene glycol (PEG). Without PEG, only large flakes several micrometers in size containing nearly pure (Y,Gd)AlO3 were obtained. Adding PEG dramatically reduced the particle size. However, the (Y,Gd)AG phase was not obtained by merely adding PEG. Instead, mainly (Y,Gd)(2)O-3 and small amount of Ce2O3 were obtained. Simultaneous use of PEG and a flux (simple salt) such as BF2 resulted in the formation of small YAG particles. The presence of the (Y,Gd)AG phase results in intense yellow-green luminescence. By selecting various heating routes, the fractions of cubic and hexagonal phases were controlled. It was found that the luminescence intensity is proportional to the fraction of cubic phase, and is probably independent of the hexagonal phase. (c) 2005 Elsevier B.V. All rights reserved.
机译:铈掺杂钇-铝石榴石(Y,Gd)(3)Al5O12:Ce,此处缩写为(Y,Gd)AG:Ce,是通过聚合物络合物方法使用高分子量聚乙二醇(PEG)系统制备的)。没有PEG,仅获得几微米大小的大片,其中包含几乎纯的(Y,Gd)AlO 3。添加PEG大大减小了粒径。但是,(Y,Gd)AG相不能仅通过添加PEG来获得。相反,主要得到(Y,Gd)(2)O-3和少量的Ce2O3。同时使用PEG和助熔剂(简单盐)如BF2,会导致形成小的YAG颗粒。 (Y,Gd)AG相的存在导致强烈的黄绿色发光。通过选择各种加热途径,可以控制立方相和六方相的比例。发现发光强度与立方相的比例成比例,并且可能与六方相无关。 (c)2005 Elsevier B.V.保留所有权利。

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