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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Improvement of Fe/MgO catalysts by calcination for the growth of single-and double-walled carbon nanotubes
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Improvement of Fe/MgO catalysts by calcination for the growth of single-and double-walled carbon nanotubes

机译:通过煅烧改进Fe / MgO催化剂以生长单壁和双壁碳纳米管

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Calcination at 900-1000 degrees C for 8-12 h of an Fe/MgO catalyst prepared by impregnation was found to result in a uniform MgFe2O4/MgO solid solution that showed a successful settling of well-dispersed iron species into the MgO lattice. During methane reduction, many iron-containing particles with a diameter of about 4 nm were formed on the catalyst surface to provide numerous active sites for the growth of singleand double-walled carbon nanotubes. There was a significant improvement of the Fe/MgO catalyst that resulted in a high yield of impurity-free nanotubes. Using C2H4 cracking at 600 degrees C and transmission electron microscope observations, the Fe species distribution in the catalysts and microscope images of nanotube growth were described in detail. H-2 reduction of the calcined Fe/MgO catalyst was found to cause the formation of iron layers on the catalyst surface, which resulted in the growth of only carbon layers. The results are useful for understanding changes in the metal species distribution in the catalysts and the nanotube growth mechanism, and they provide a simple method to improve Fe/MgO catalysts.
机译:发现在900-1000摄氏度下煅烧8-12小时的浸渍制得的Fe / MgO催化剂可产生均匀的MgFe2O4 / MgO固溶体,表明铁元素分布良好,已成功沉降到MgO晶格中。在甲烷还原过程中,许多直径约为4 nm的含铁颗粒在催化剂表面形成,从而为单壁和双壁碳纳米管的生长提供了许多活性位点。 Fe / MgO催化剂得到了显着改进,从而导致了高产率的无杂质纳米管。利用600℃下的C 2 H 4裂解和透射电子显微镜观察,详细描述了催化剂中的Fe种类分布和纳米管生长的显微镜图像。发现煅烧的Fe / MgO催化剂的H-2还原导致在催化剂表面上形成铁层,这仅导致碳层的生长。该结果对于理解催化剂中金属种类分布的变化和纳米管的生长机理是有用的,并且它们提供了改进Fe / MgO催化剂的简单方法。

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