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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >High-throughput continuous hydrothermal flow synthesis of Zn-Ce oxides: Unprecedented solubility of Zn in the nanoparticle fluorite lattice
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High-throughput continuous hydrothermal flow synthesis of Zn-Ce oxides: Unprecedented solubility of Zn in the nanoparticle fluorite lattice

机译:Zn-Ce氧化物的高通量连续水热流合成:Zn在纳米萤石萤石晶格中前所未有的溶解度

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High-throughput continuous hydrothermal flow synthesis has been used as a rapid and efficient synthetic route to produce a range of crystalline nanopowders in the Ce- Zn oxide binary system. High-resolution powder X-ray diffraction data were obtained for both as-prepared and heat-treated (850°C for 10 h in air) samples using the new robotic beamline located at Diamond Light Source. The influence of the sample composition on the crystal structure and on the optical and physical properties was studied. All the nanomaterials were characterized using Raman spectroscopy, UV-visible spectrophotometry, Brunauer-Emmett-Teller surface area and elemental analysis (via energy-dispersive X-ray spectroscopy). Initially, for 'as-prepared' Ce _(1-x)Zn_xO_y, a phase- pure cerium oxide (fluorite) structure was obtained for nominal values of x = 0.1 and 0.2. Biphasic mixtures were obtained for nominal values of x in the range of 0.30.9 (inclusive). High-resolution transmission electron microscopy images revealed that the phase-pure nano-CeO_2 (x = 0) consisted of ca 3.7nm well-defined nanoparticles. The nanomaterials produced herein generally had high surface areas (greater than 150 m2 g-1) and possessed combinations of particle properties (e.g. bandgap, crystallinity, size, etc.) that were unobtainable or difficult to achieve by other more conventional synthetic methods.
机译:高通量连续水热流合成已被用作快速有效的合成途径,以在Ce-Zn氧化物二元体系中生产一系列晶体纳米粉体。使用位于钻石光源的新型自动光束线,可以得到制备后的样品和经过热处理(在空气中850°C持续10 h)的高分辨率粉末X射线衍射数据。研究了样品组成对晶体结构以及光学和物理性质的影响。使用拉曼光谱,紫外可见分光光度法,Brunauer-Emmett-Teller表面积和元素分析(通过能量色散X射线光谱法)对所有纳米材料进行了表征。最初,对于“准备好的” Ce _(1-x)Zn_xO_y,获得了x = 0.1和0.2的标称值的相纯氧化铈(萤石)结构。 x的标称值在0.30.9(含)范围内,获得了双相混合物。高分辨率透射电子显微镜图像显示,纯相纳米CeO_2(x = 0)由大约3.7nm的明确定义的纳米颗粒组成。本文生产的纳米材料通常具有高表面积(大于150 m2 g-1),并且具有其他其他常规合成方法无法获得或难以实现的颗粒特性(例如带隙,结晶度,尺寸等)的组合。

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