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Template-free synthesis of molybdenum oxide-based hierarchical microstructures at low temperatures

机译:低温下无模板合成基于氧化钼的分层微结构

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Molybdenum oxide-based hierarchical microstructures assembled radially by anisotropic nanostruc-tures (nanoplates/microprismsanorods) have been synthesized at low temperatures for the first time via a facile template-free hydrothermal approach. The influence of hydrothermal temperature, time, concentration of the peroxomolybdic acid solution, and additives on the morphology of products has been investigated. It has been found that the morphology of urchin-shaped microstructures of peroxo-modified molybdenum oxide hydrates can be controlled in the temperature range of 65-75 ℃. The as-synthesized uniform microstructures, which are collected from the 0.9 mol/L molybdenum solutions after 14 h at 75 ℃, are 35-40 μm in diameter, and they are constructed by nanoscale blocks of 300-400 nm in width and ~190 nm in thickness. The dimensions of microstructures and their building blocks are dramatically magnified when the molybdenum concentration is reduced, while those dimensions can be efficiently decreased by adding small quantities of HNO_3 or LiNO_3 into the precursor solution. By moderate calcination, α-MoO_3 with a hierarchical microstructure can be achieved. The possible formation mechanism of urchin-shaped microstructures is discussed using the results of UV-visible spectroscopy and electron microscopy.
机译:通过各向异性的纳米结构(纳米板/微棱镜/纳诺德)径向组装的基于氧化钼的分层微结构已首次通过一种简便的无模板水热方法在低温下合成。研究了水热温度,时间,过氧钼酸溶液浓度和添加剂对产物形态的影响。已经发现,过氧改性的氧化钼水合物的海胆形微观结构的形态可以控制在65-75℃的温度范围内。合成后的均匀微观结构是在75℃14 h后从0.9 mol / L钼溶液中收集而来,直径为35-40μm,由宽度为300-400 nm〜190的纳米级块构成厚度为nm。当降低钼的浓度时,微观结构及其构造块的尺寸会显着放大,而通过向前体溶液中添加少量HNO_3或LiNO_3可以有效地减小这些尺寸。通过适度的煅烧,可以得到具有分层微观结构的α-MoO_3。利用紫外可见光谱和电子显微镜的结果讨论了海胆形微结构的可能形成机理。

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