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Preparation of nanosized metal (oxides) by gas phase hydrolysis using mesoporous materials as nanoreactors

机译:使用介孔材料作为纳米反应器通过气相水解制备纳米金属(氧化物)

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摘要

Immobilized nanosized metal (oxides) on carbonaceous carriers were prepared by hydrolysis under mild conditions by using the carrier pores as a kind of nanoreactor. Metal alkoxide vapor was adsorbed on the carrier and then formed the product upon exposure to water vapor. With this facile method, Titania, Vanadia, Rhodium (oxide), and Platinum (oxide) nanostructures were prepared at high yields, high loadings, and good dispersion in the carrier material. High number concentrations of spheroidal nanoparticles of uniform size (diameter ca. 5 nm) were obtained from less reactive precursors, whereas with highly reactive precursors, such nanoparticles occurred only after subsequent calcination. Nanoparticles appeared to be the thermodynamically stable form of the metal (oxide) produced in the pores. Highly reactive precursors formed metastable seeds, which nucleated and restructured into nanoparticles upon subsequent exposure to heat. The presented method allows for preparation of metal (oxide) nanostructures and effective control of their size and shape.
机译:通过使用载体孔作为一种纳米反应器,在温和的条件下水解,制备了固定在碳质载体上的纳米级金属(氧化物)。金属醇盐蒸气吸附在载体上,然后在暴露于水蒸气时形成产物。通过这种简便的方法,可以高收率,高载量和在载体材料中的良好分散性制备二氧化钛,钒,铑(氧化物)和铂(氧化物)纳米结构。从反应性较低的前体中获得高浓度的均匀尺寸(直径约5 nm)的球形纳米颗粒,而反应性高的前体仅在随后的煅烧后才出现。纳米颗粒似乎是在孔中产生的金属(氧化物)的热力学稳定形式。高反应性前体形成亚稳态种子,随后暴露于热下,它们形核并重组为纳米颗粒。提出的方法允许制备金属(氧化物)纳米结构并有效控制其尺寸和形状。

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