Wang Xiao, Ding Feng
Center for Multidimensional Carbon Materials , Institute for Basic Science , Ulsan 44919 , South Korea.
School of Materials Science and Engineering , Ulsan National Institute of Science and Technology , Ulsan 44919 , South Korea.
J Phys Chem Lett. 2019 Feb 21;10(4):735-741. doi: 10.1021/acs.jpclett.9b00207. Epub 2019 Feb 4.
Although the growth of single-wall carbon nanotubes (SWCNTs) with a chirality selectivity up to 90% has been successfully achieved using solid catalysts ( Yang , F. Nature , 2014 , 510 , 522 ; Zhang , S. ; Nature , 2017 , 543 , 234 , etc.), the underlying mechanism that governs the chirality selection is far from clear. Here we propose a mechanism to understand how a solid catalyst particle determines the structure of the SWCNT grown on it. The mechanism has to satisfy three criteria: (i) thermodynamic selection of SWCNTs that possess a structural symmetry the same as that of the catalyst surface; (ii) kinetic elimination of the achiral SWCNTs with extremely low growth rates; (iii) rough control over the catalyst particle size leads to SWCNTs with only one or a few dominant chiralities. Besides the deep understanding on the mechanisms of experimentally synthesized (12, 6) and (8, 4) SWCNTs, the preference growth of other SWCNTs of the (2 n, n) family, such as the (10, 5) or (6, 3) SWCNTs, by using catalyst surface with a 5- or 3-fold symmetry is predicted. Such a simple three-criteria mechanism deepens our understanding of the selective growth of SWCNTs and provides a guideline for catalyst design for controlled SWCNT synthesis.
尽管使用固体催化剂已成功实现了手性选择性高达90%的单壁碳纳米管(SWCNT)的生长(杨,F.《自然》,2014年,510卷,522页;张,S.;《自然》,2017年,543卷,234页等),但控制手性选择的潜在机制仍远未明确。在此,我们提出一种机制来理解固体催化剂颗粒如何决定在其上生长的SWCNT的结构。该机制必须满足三个标准:(i)对具有与催化剂表面相同结构对称性的SWCNT进行热力学选择;(ii)动力学消除生长速率极低的非手性SWCNT;(iii)对催化剂颗粒尺寸的粗略控制导致仅具有一种或几种主要手性的SWCNT。除了对实验合成的(12, 6)和(8, 4)SWCNT的机制有深入理解外,还预测了通过使用具有五重或三重对称性的催化剂表面,(2n, n)族的其他SWCNT,如(10, 5)或(6, 3)SWCNT的优先生长。这样一个简单的三标准机制加深了我们对SWCNT选择性生长的理解,并为可控SWCNT合成的催化剂设计提供了指导。