Key Laboratory of Eco-Chemical Engineering, Ministry of Education, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
Nanoscale. 2018 Apr 5;10(14):6744-6750. doi: 10.1039/c7nr09539b.
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.
使用 Fe 催化剂,通过交替的甲烷和一氧化碳作为碳源,化学气相沉积合成单壁碳纳米管,导致不同直径的管之间形成结的可逆形成。结合管/催化剂界面的原子级建模,这表明管和其成核颗粒的直径比,即生长模式,取决于催化剂内部的碳分数。对于一氧化碳,纳米颗粒强烈富碳,并倾向于在垂直生长模式下使管去湿。与过去十年文献中的可用报告进行交叉检查强烈表明,这些条件应有利于经验上观察到的近扶手椅手性选择性。