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Synthesis of carbon nanotubes–Fe–Al2O3 powders.Influence of the characteristics of the starting Al1.8Fe0.2O3 oxide solid solution

机译:碳纳米管–Fe–Al2O3粉末的合成。起始Al1.8Fe0.2O3氧化物固溶体特性的影响

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摘要

Al1.8Fe0.2O3 amorphous solid solution have been calcined at temperatures between 1025 and 1100°C and the obtained powders have been reduced in a H2–CH4 gas mixture (12 mol% CH4) at 1050°C in order to prepare carbon nanotubes (CNTs)–Fe/Fe3C–Al2O3 nanocomposite powders. The calcination at 1100°C leads to powders containing an a-Al222xFe2xO3 solid solution (x , 0.1) and some traces of a Fe-rich phase (a-Fe222yAl2yO3) that gives, under reduction, large Fe particles which catalyze the growth of ribbon like filaments. An a-Al1.8Fe0.2O3 monophased solid solution with a higher specific surface area is obtained after a calcination at only 1050 or 1025°C. In the corresponding composite powders, all filaments are isolated CNTs or bundles of CNTs and the high specific area is beneficial to both the quantity and the quality parameters which are greatly enhanced in comparison with previous results. About 20% of the observed CNTs are single wall nanotubes (SWNTs). The majority of the observed multiwall nanotubes (MWNTs) have only two walls and the inner diameters are distributed between 0.8 and 6 nm, with a peak at 2 nm. The in-situ catalysis by selective reduction of a solid solution allows for production of nanocomposite powders containing very large quantities of high quality CNTs
机译:已在1025至1100°C之间的温度下煅烧Al1.8Fe0.2O3非晶态固溶体,并将所得粉末在1050°C的H2-CH4气体混合物(12 mol%CH4)中还原,以制备碳纳米管(碳纳米管)–Fe / Fe3C–Al2O3纳米复合粉末。在1100°C下煅烧会生成粉末,其中包含a-Al222xFe2xO3固溶体(x,0.1)和一些痕量的富铁相(a-Fe222yAl2yO3),还原后会生成大的铁颗粒,从而催化碳带的生长像细丝。在仅1050或1025℃下煅烧后,获得具有较高比表面积的α-Al1.8Fe0.2O3单相固溶体。在相应的复合粉末中,所有细丝都是孤立的CNT或CNT束,高比表面积有利于数量和质量参数,与以前的结果相比大大提高。观察到的CNT中约20%是单壁纳米管(SWNT)。观察到的大多数多壁纳米管(MWNT)仅具有两个壁,内径分布在0.8到6 nm之间,在2 nm处有一个峰。通过选择性还原固溶体进行原位催化可生产出包含大量高质量CNT的纳米复合粉末

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