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General and Facile Method To Prepare Uniform Y2O3:Eu Hollow Microspheres

机译:制备均匀Y2O3:Eu空心微球的通用方法

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摘要

Well-shaped Y2O3:Eu hollow microspheres have been successfully prepared on a large scale via a urea-based homogeneous precipitation technique in the presence of colloidal carbon spheres as hard templates followed by a subsequent heat treatment process. XRD results demonstrate that all the diffraction peaks of the samples can be well indexed to the pure cubic phase Of Y2O3. TEM and SEM images indicate that the shell of the uniform hollow spheres, whose diameters are about 250 nm, is composed of many uniform nanoparticles with diameters of about 20 nm, basically consistent with the estimation of XRD results. Furthermore, the main process in this method was carried out in aqueous condition, without the use of organic solvents or etching agents. The as-prepared hollow Y2O3:Eu microspheres show a strong red emission corresponding to the D-5(0)-F-7(2) transition of the Eu3+ ions under ultraviolet or low voltage excitation, which might find potential applications in fields such as light phosphor powders, advanced flat panel displays, field emission display devices, and biological labeling.
机译:良好的形状的Y2O3:Eu中空微球已经成功通过尿素基均相沉淀技术在胶体碳球作为硬模板的情况下大规模制备,随后进行了热处理。 XRD结果表明,样品的所有衍射峰都可以很好地指向Y2O3的纯立方相。 TEM和SEM图像表明,直径约250nm的均匀空心球的壳由许多直径约20nm的均匀纳米颗粒组成,与XRD结果的估计基本一致。此外,该方法的主要过程是在水性条件下进行的,无需使用有机溶剂或蚀刻剂。制备的空心Y2O3:Eu微球显示出强烈的红色发射,对应于紫外线或低压激发下Eu3 +离子的D-5(0)-F-7(2)跃迁,这可能在诸如此类的领域中找到潜在的应用作为荧光粉,高级平板显示器,场发射显示设备和生物标记。

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