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Investigation of the Emission Mechanism in Milled SrAl2O4:Eu, Dy Using Optical and Synchrotron X-ray Spectroscopy

机译:光学和同步加速器X射线光谱研究SrAl2O4:Eu,Dy研磨过程中的发射机理

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There currently exists much debate as to the active state related to the "long afterglow" effect in europium doped oxide materials. Redox couples that consist of Eu~(+/2+) and Eu~(2+/3+) are discussed, but no common answer is currently accepted. Here, we present a comparison of the optical properties of a commercially available SrAl2O4:Eu, Dy phosphor, as a function of nanoparticle size reduction via dry mechanical milling. X-ray and optical spectroscopic data indicate a significant decrease in phosphorescence efficiency and an increase in laser stimulated emission efficiency as near surface Eu~(2+) ions are oxidized to Eu~(3+) as a consequence of increased exposure during the milling process. These results show evidence only for Eu~(2+/3+)oxidation states, suggesting the mechanism related to long afterglow effect does not arise from Eu~+ species. We also suggest that size reduction, as a rule, cannot be universally applied to improve optical properties of nanostructures.
机译:当前,关于oxide掺杂氧化物材料中的“长余辉”效应的活性状态存在很多争论。讨论了由Eu〜(+ / 2+)和Eu〜(2 + / 3 +)组成的氧化还原对,但目前尚无共同答案。在这里,我们比较了市售SrAl2O4:Eu,Dy荧光粉的光学性质,并将其作为通过干式机械研磨减小纳米颗粒尺寸的函数。 X射线和光谱数据表明,由于研磨过程中暴露量增加,近表面Eu〜(2+)离子被氧化成Eu〜(3+),磷光效率明显降低,激光激发的发射效率提高。处理。这些结果仅显示了Eu〜(2 + / 3 +)氧化态的证据,表明与Eu〜+种类无关的长余辉效应的机理。我们还建议减小尺寸通常不能普遍用于改善纳米结构的光学性能。

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