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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Ferrocene Catalyzed Carbon Nanotube Formation in Carbonaceous Solid
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Ferrocene Catalyzed Carbon Nanotube Formation in Carbonaceous Solid

机译:二茂铁催化碳纳米管中碳纳米管的形成

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摘要

Carbon nanotubes are formed in a carbonaceous solid from thermal decomposition of various amounts of 1,4-diferrocenylbutadiyne in the presence of an excess amount of a multi(ethynyl)aromatic compound. Only a small amount of the ferrocenyl compound is needed to achieve the formation of carbon nanotubes in high yield. The method described here permits the large-scale production of carbon nanotubes in a shaped, solid configuration. The carbon nanotubes form under atmospheric pressure during the carbonization process above 500℃ in the carbonaceous solid. The Fe atoms, nanoclusters, and/or nanoparticles formed from the decomposition of the 1,4-diferrocenylbutadiyne are the key to the formation of the carbon nanotubes in the developing carbonaceous solid by reacting with the developing polycondensed aromatic ring system. The carbonaceous solids were characterized by X-ray diffraction, Raman spectroscopy, transmission electron microscopy, and scanning electron microscopy studies.
机译:在过量的多(乙炔基)芳族化合物存在下,通过热分解各种量的1,4-二茂铁基丁二炔,在碳质固体中形成碳纳米管。仅需要少量的二茂铁基化合物即可以高收率实现碳纳米管的形成。此处描述的方法允许大规模生产形状固定的碳纳米管。碳纳米管在高于500℃的碳化过程中,在大气压下形成碳纳米管。由1,4-二茂铁基丁二炔的分解形成的Fe原子,纳米团簇和/或纳米颗粒是通过与发展的缩合的芳族环体系反应在发展的碳质固体中形成碳纳米管的关键。通过X射线衍射,拉曼光谱,透射电子显微镜和扫描电子显微镜研究来表征碳质固体。

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