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Effect of the vanadium(V) concentration on the spectroscopic properties of nanosized europium-doped yttrium phosphates

机译:钒(V)浓度对纳米铕掺杂磷酸钇光谱性质的影响

摘要

Nanosized rare earth phosphovanadate phosphors (Y(P,V)O-4:Eu3+) have been prepared by applying the organic-inorganic polymeric precursors methodology. Luminescent powders with tetragonal structure and different vanadate concentrations (0%, 1%, 5%, 10%, 20%, 50%, and 100%, with regard to the phosphate content) were then obtained for evaluation of their structural and spectroscopic properties. The solids were characterized by scanning electron microscopy, X-ray diffractometry, vibrational spectroscopy (Raman and infrared), and electronic spectroscopy (emission, excitation, luminescence lifetimes, chromaticity, quantum efficiencies, and Judd-Ofelt intensity parameters). The solids exhibited very intense D-5(0) - F-7(J) Eu3+ transitions, and it was possible to control the luminescent characteristics, such as excitation maximum, lifetime and emission colour, through the vanadium(V) concentration. The observed luminescent properties correlated to the characteristics of the chemical environments around the Eu3+ ions with respect to the composition of the phosphovanadates. The Eu3+ luminescence spectroscopy results indicated that the presence of larger vanadium(V) amounts in the phosphate host lattice led to more covalent and polarizable chemical environments. So, besides allowing for control of the luminescent properties of the solids, the variation in the vanadate concentration in the obtained YPO4:Eu3+ phosphors enabled the establishment of a strict correlation between the observable spectroscopic features and the chemical characteristics of the powders.
机译:纳米稀土磷钒酸盐荧光粉(Y(P,V)O-4:Eu3 +)已通过应用有机-无机聚合物前体方法制备。然后获得具有四方结构和不同钒酸盐浓度(就磷酸盐含量而言为0%,1%,5%,10%,20%,50%和100%)的发光粉末,以评估其结构和光谱性质。通过扫描电子显微镜,X射线衍射,振动光谱(拉曼光谱和红外光谱)和电子光谱(发射,激发,发光寿命,色度,量子效率和Judd-Ofelt强度参数)对固体进行表征。固体表现出非常强的D-5(0)→F-7(J)Eu3 +跃迁,并且可以通过钒(V)浓度控制发光特性,例如最大激发,寿命和发射颜色。相对于磷钒酸盐的组成,观察到的发光性质与Eu3 +离子周围化学环境的特征相关。 Eu3 +发光光谱结果表明,磷酸盐基质晶格中存在较大的钒(V)导致更共价和可极化的化学环境。因此,除了可以控制固体的发光性能外,所得YPO4:Eu3 +磷光体中钒酸盐浓度的变化还可以在粉末的可观察光谱特征与化学特征之间建立严格的相关性。

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