Fukui Institute for Fundamental Chemistry, Kyoto University, Japan.
J Am Chem Soc. 2012 Jun 6;134(22):9311-9. doi: 10.1021/ja301299t. Epub 2012 May 22.
We present an analysis of the dynamics of single-walled carbon nanotube (SWCNT) chirality during growth, using the recently developed local chirality index (LOCI) method [ Kim et al. Phys. Rev. Lett. 2011 , 107 , 175505 ] in conjunction with quantum chemical molecular dynamics (QM/MD) simulations. Using (5,5) and (8,0) SWCNT fragments attached to an Fe(38) catalyst nanoparticle, growth was induced by periodically placing carbon atoms at the edge of the SWCNT. For both armchair and zigzag SWCNTs, QM/MD simulations indicate that defect healing-the process of defect removal during growth-is a necessary, but not sufficient, condition for chirality-controlled SWCNT growth. Time-evolution LOCI analysis shows that healing, while restoring the pristine hexagon structure of the growing SWCNT, also leads to changes in the local chirality of the SWCNT edge region and thus of the entire SWCNT itself. In this respect, we show that zigzag SWCNTs are significantly inferior in maintaining their chirality during growth compared to armchair SWCNTs.
我们提出了一种分析单壁碳纳米管(SWCNT)手性在生长过程中的动力学的方法,使用最近开发的局部手性指数(LOCI)方法[Kim 等人,物理评论快报 2011,107,175505],结合量子化学分子动力学(QM/MD)模拟。使用(5,5)和(8,0)SWCNT 片段附着在 Fe(38)催化剂纳米颗粒上,通过周期性地在 SWCNT 的边缘放置碳原子来诱导生长。对于扶手椅和锯齿形 SWCNT,QM/MD 模拟表明,缺陷愈合——在生长过程中去除缺陷的过程——是手性控制的 SWCNT 生长的必要条件,但不是充分条件。时变 LOCI 分析表明,愈合虽然恢复了生长中 SWCNT 的原始六边形结构,但也导致 SWCNT 边缘区域的局部手性发生变化,从而导致整个 SWCNT 本身的手性发生变化。在这方面,我们表明,与扶手椅 SWCNT 相比,锯齿形 SWCNT 在生长过程中保持其手性的能力明显较差。