首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Novel spherical hierarchical structures of GdOOH and Eu:GdOOH: rapid microwave-assisted synthesis through self-assembly, thermal conversion to oxides, and optical studies
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Novel spherical hierarchical structures of GdOOH and Eu:GdOOH: rapid microwave-assisted synthesis through self-assembly, thermal conversion to oxides, and optical studies

机译:GdOOH和Eu:GdOOH的新型球形分层结构:通过自组装,热转化为氧化物和光学研究的快速微波辅助合成

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We report a novel, rapid, and low-temperature method for the synthesis of undoped and Eu-doped GdOOH spherical hierarchical structures, without using any structure-directing agents, through the microwave irradiation route. The as-prepared product consists of nearly monodisperse microspheres measuring about 1.3 nm in diameter. Electron microscopy reveals that each microsphere is an assembly of two-dimensional nanoflakes (about 30 nm thin) which, in turn, result from the assembly of crystallites measuring about 9 nm in diameter. Thus, a three-level hierarchy can be seen in the formation of the GdOOH microspheres: from nanoparticles to 2D nanoflakes to 3D spherical structures. When doped with Eu~(3+) ions, the GdOOH microspheres show a strong red emission, making them promising candidates as phosphors. Finally, thermal conversion at modest temperatures leads to the formation of corresponding oxide structures with enhanced luminescence, while retaining the spherical morphology of their oxyhydroxide precursor.
机译:我们报告了一种新颖,快速,低温的方法,通过微波辐射途径合成不掺杂和and掺杂的GdOOH球形分层结构,而无需使用任何结构定向剂。所制备的产品由直径约1.3 nm的几乎单分散的微球组成。电子显微镜显示,每个微球都是二维纳米薄片(约30 nm薄)的组件,而二维纳米薄片又是由直径约9 nm的微晶组件组装而成的。因此,在GdOOH微球的形成中可以看到三级层次:从纳米颗粒到2D纳米薄片再到3D球形结构。当掺有Eu〜(3+)离子时,GdOOH微球显示出很强的红色发射,使其有望成为磷光体。最后,在适度温度下的热转化导致形成具有增强发光的相应氧化物结构,同时保持其羟基氧化物前体的球形形态。

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