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Effect of different catalyst preparation methods on the synthesis of carbon nanotubes with the flame pyrolysis method

机译:不同催化剂制备方法对火焰热解法合成碳纳米管合成的影响

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摘要

The Flame pyrolysis method used to synthesize carbon nanotubes was studied in this work. In order to improve the quality of synthesized carbon nanotubes, it is important to change the corresponding natures of the catalyst. Two catalyst preparation methods, namely, the sol-gel method and the impregnation method, were compared in this experiment. The properties of the catalyst are analyzed in depth by energy dispersive spectrometer (EDS), x-ray diffraction (XRD), temperature program reduction (TPR). The generation of carbon nanotubes was systematically analysed through scanning electron microscope (SEM), molecule dynamics (MD), raman spectroscopy and transmission electron microscope (TEM). The results show that the catalysts prepared by the impregnation method are stickier, dispersed and easier to dip onto the probe or substrate, which is beneficial for the large-scale production of carbon tubes. The specific surface area of alumina is larger and the iron and molybdenum oxide are more evenly dispersed on the surface of alumina. The carbon nanotubes produced by the catalysts prepared by impregnation method are flatter and have less impurities. The ratio of ID/IG+ is 29.7% lower than that of the sol-gel method in the Raman spectra. The TEM statistics show that the average diameter of the carbon tubes decreases by 23.3%. Therefore, the impregnation method can improve the quality of carbon nanotubes in the case of a similar degree of difficulty in the preparation of the catalyst.
机译:在这项工作中研究了用于合成碳纳米管的火焰热解方法。为了提高合成碳纳米管的质量,重要的是改变催化剂的相应性质。在该实验中比较了两种催化剂制备方法,即溶胶 - 凝胶法和浸渍方法。通过能量分散光谱仪(EDS),X射线衍射(XRD),温度计划减少(TPR)深度分析催化剂的性质。通过扫描电子显微镜(SEM),分子动力学(MD),拉曼光谱和透射电子显微镜(TEM)系统地分析碳纳米管的产生。结果表明,通过浸渍方法制备的催化剂是贴粘性的,分散和更容易浸到探针或基板上,这对于大规模生产碳管是有益的。氧化铝的比表面积较大,氧化铁和氧化钼更均匀地分散在氧化铝表面上。通过浸渍方法制备的催化剂产生的碳纳米管是漂流的并且具有较少的杂质。 ID / Ig +的比例比拉曼光谱中的溶胶 - 凝胶方法低29.7%。 TEM统计数据显示,碳管的平均直径降低23.3%。因此,在制备催化剂的制备时,浸渍方法可以提高碳纳米管的质量。

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