Materials and Manufacturing Directorate, Air Force Research Laboratory, Wright-Patterson Air Force Base, Dayton, OH, 45433, USA.
UES, Inc., Dayton, OH, 45432, USA.
Small. 2020 Sep;16(38):e2002120. doi: 10.1002/smll.202002120. Epub 2020 Aug 18.
A challenge in the synthesis of single-wall carbon nanotubes (SWCNTs) is the lack of control over the formation and evolution of catalyst nanoparticles and the lack of control over their size or chirality. Here, zeolite MFI nanosheets (MFI-Ns) are used to keep cobalt (Co) nanoparticles stable during prolonged annealing conditions. Environmental transmission electron microscopy (ETEM) shows that the MFI-Ns can influence the size and shape of nanoparticles via particle/support registry, which leads to the preferential docking of nanoparticles to four or fewer pores and to the regulation of the SWCNT synthesis products. The resulting SWCNT population exhibits a narrow diameter distribution and SWCNTs of nearly all chiral angles, including sub-nm zigzag (ZZ) and near-ZZ tubes. Theoretical simulations reveal that the growth of these unfavorable tubes from unsupported catalysts leads to the rapid encapsulation of catalyst nanoparticles bearing them; their presence in the growth products suggests that the MFI-Ns prevent nanoparticle encapsulation and prologue ZZ and near-ZZ SWCNT growth. These results thus present a path forward for controlling nanoparticle formation and evolution, for achieving size- and shape-selectivity at high temperature, and for controlling SWCNT synthesis.
合成单壁碳纳米管 (SWCNT) 的一个挑战是缺乏对催化剂纳米粒子形成和演化的控制,以及对其大小或手性的控制。在这里,沸石 MFI 纳米片 (MFI-Ns) 被用来在长时间的退火条件下保持钴 (Co) 纳米粒子的稳定性。环境透射电子显微镜 (ETEM) 表明,MFI-Ns 可以通过颗粒/载体配准来影响纳米颗粒的大小和形状,从而导致纳米颗粒优先与四个或更少的孔对接,并调节 SWCNT 的合成产物。得到的 SWCNT 群体表现出较窄的直径分布和几乎所有手性角的 SWCNT,包括亚纳米锯齿 (ZZ) 和近-ZZ 管。理论模拟表明,这些不利的管从无载体催化剂生长会导致承载它们的催化剂纳米颗粒的快速封装;它们在生长产物中的存在表明 MFI-Ns 阻止了纳米颗粒的封装以及 ZZ 和近-ZZ SWCNT 生长的提前开始。因此,这些结果为控制纳米颗粒的形成和演化、在高温下实现尺寸和形状选择性以及控制 SWCNT 合成提供了一条途径。