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首页> 外文期刊>Nanoscale >Tuning morphology, surface, and nanocrystallinity of rare earth vanadates by one-pot colloidal conversion of hydroxycarbonates
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Tuning morphology, surface, and nanocrystallinity of rare earth vanadates by one-pot colloidal conversion of hydroxycarbonates

机译:调优形态、表面和nanocrystallinity稀土钒酸盐类,胶体hydroxycarbonates转换

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摘要

We show that particle size, morphology, nanocrystallinity, surface area, and defect density of (Y,Eu)VO4 structures can be tuned by one-pot colloidal conversion of rare earth hydroxycarbonates in water/ethylene glycol (EG) suspensions. Using small angle X-ray scattering, transmission electron microscopy and dynamic light scattering, we show how volume fractions of EG direct the amorphous to crystalline conversion at 1 atm/95 degrees C by controlling size and aggregation of hydroxycarbonate precursors. A template effect due to a Kirkendall-type conversion occurs for low EG contents, yielding solids with high densities of oxygen defects, as demonstrated by O-2 uptakes in thermogravimetry and X-ray photoelectron spectroscopy profiles. Starting from small and aggregated hydroxycarbonates high-porosity (Y,Eu)VO4 nanoparticles were produced with expanded unit cells and short-range (<100 angstrom) crystalline ordering. We explored the effects of synthesis on the textural, microstructure, and defects of (Y,Eu)VO4 solids, which were further correlated to the spectroscopic profiles of Eu3+-activated samples. We show that the ratios between Eu3+ 5D0 internal quantum yields and particle diameters can be directly correlated to the particle surface areas, opening new perspectives for theoretical detailing of f-f luminescence in YVO4 solids, and enabling accurate tuning of structure and applicability of colloidal vanadate nanoparticles for sensing and catalysis applications.
机译:我们表明,粒子大小、形态、nanocrystallinity、表面积和缺陷密度(Y,欧盟)一种结构可以调整锅胶态稀土的转换hydroxycarbonates在水/乙二醇(EG)停课。透射电子显微镜和动态的光散射,我们显示的体积分数如直接无定形结晶转换1通过控制大小和atm / 95摄氏度聚合hydroxycarbonate的前兆。由于Kirkendall-type模板的影响转换发生低如内容、屈服固体密度高的氧缺陷,在热重量分析法证明了0 2吸收和x射线光电子能谱资料。从小型和聚合hydroxycarbonates多孔(Y,欧盟)的一种纳米颗粒与扩大生产单位细胞和短程(< 100埃)晶体排序。结构、微观结构和缺陷的欧盟(Y)一种固体,进一步联系欧盟三国的光谱资料+激活样本。内部量子产量和粒子直径粒子可以直接相关表面区域,打开新的视角理论详细f YVO4发光固体,使精确的优化结构钒酸胶体和适用性纳米传感和催化作用应用程序。

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