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Growth modes and chiral selectivity of single-walled carbon nanotubes

机译:增长模式和手性选择性的单壁碳纳米管

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Chemical vapor deposition synthesis of single-walled carbon nanotubes, using an Fe catalyst, and alternating methane and carbon monoxide as carbon feedstocks, leads to the reversible formation of junctions between tubes of different diameters. Combined with an atomistic modeling of the tube/catalyst interface, this shows that the ratio of diameters of the tube and its seeding particle, denoting the growth mode, depends on the carbon fraction inside the catalyst. With carbon monoxide, nanoparticles are strongly carbon enriched, and tend to dewet the tube, in a perpendicular growth mode. Cross-checking our results with the available reports from the literature of the last decade strongly suggests that these latter conditions should favor the near armchair chiral selectivity observed empirically.
机译:化学气相沉积合成单壁碳纳米管,使用铁催化剂,交替甲烷和二氧化碳一氧化碳原料,导致的可逆形成管之间的连接不同的直径。原子论的建模管/催化剂接口,这表明直径的比值管及其播种粒子,表示增长模式,取决于碳分数内的催化剂。强烈碳纳米颗粒丰富,倾向于dewet管,垂直增长模式。可用的报告文学的最后十年强烈表明,这些后者扶手椅附近手性条件更加有利选择性观察到的经验。

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