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首页> 外文期刊>Science and technology of advanced materials >Controlled processing of (Gd,Ln)2O3:Eu (Ln?=?Y, Lu) red phosphor particles and compositional effects on photoluminescence
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Controlled processing of (Gd,Ln)2O3:Eu (Ln?=?Y, Lu) red phosphor particles and compositional effects on photoluminescence

机译:(Gd,Ln)2O3:Eu(Ln?=?Y,Lu)红色荧光粉颗粒的受控处理及其对光致发光的影响

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Synthesis of (Gd0.95?xLnxEu0.05)2O3 (Ln?=?Y and Lu, x?=?0–0.95) powders via ammonium hydrogen carbonate (AHC) precipitation has been systematically studied. The best synthesis parameters are found to be an AHC/total cation molar ratio of 4.5 and an ageing time of 3?h. The effects of Y3+ and Lu3+ substitution for Gd3+, on the nucleation kinetics of the precursors and structural features and optical properties of the oxides, have been investigated. The results show that (i) different nucleation kinetics exist in the Gd–Y–Eu and Gd–Lu–Eu ternary systems, which lead to various morphologies and particle sizes of the precipitated precursors. The (Gd,Y)2O3:Eu precursors display spherical particle morphologies and the particle sizes increase along with more Y3+ addition. The (Gd,Lu)2O3:Eu precursors, on the other hand, are hollow spheres and the particle sizes increase with increasing Lu3+ incorporation, (ii) the resultant oxide powders are ultrafine, narrow in size distribution, well dispersed and rounded in particle shape, (iii) lattice parameters of the two kinds of oxide solid solutions linearly decrease at a higher Y3+ or Lu3+ content. Their theoretical densities linearly decrease with increasing Y3+ incorporation, but increase along with more Lu3+ addition and (iv) the two kinds of phosphors exhibit typical red emissions at ~613?nm and their charge-transfer bands blue shift at a higher Y3+ or Lu3+ content. Photoluminescence/photoluminescence excitation intensities and external quantum efficiency are found to decrease with increasing value of x, and the fluorescence lifetime mainly depends on the specific surface areas of the powders.
机译:(Gd 0.95?x Ln x Eu 0.05 2 O 3 的合成(Ln?=?Y和Lu,x?=?0-0.95)粉末通过碳酸氢铵(AHC)沉淀得到了系统的研究。发现最佳的合成参数是AHC /总阳离子摩尔比为4.5和老化时间为3小时。 Y 3 + 和Lu 3 + 取代Gd 3 + 对前驱物成核动力学,结构特征和光学性能的影响已经研究了氧化物的种类。结果表明:(i)Gd-Y-Eu和Gd-Lu-Eu三元体系中存在不同的成核动力学,这导致了沉淀前体的各种形貌和粒径。 (Gd,Y) 2 O 3 :Eu前体表现出球形颗粒形态,并且随着Y 3 + 的添加而增加。另一方面,(Gd,Lu) 2 O 3 :Eu前体是空心球,其粒径随Lu 3+的增加而增加掺入;(ii)所得氧化物粉末超细,粒度分布窄,分散良好且颗粒呈圆形;(iii)两种氧化物固溶体的晶格参数在较高的Y 3下线性降低+ 或Lu 3 + 内容。它们的理论密度随Y 3 + 掺入的增加而线性降低,但随着Lu 3 + 的添加而增加,并且(iv)两种荧光粉在〜时表现出典型的红色发射。更高的Y 3 + 或Lu 3 + 含量使613?nm及其电荷转移带发生蓝移。随着x值的增加,发现光致发光/光致发光激发强度和外部量子效率降低,并且荧光寿命主要取决于粉末的比表面积。

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