Department of Biotechnology and Chemical Technology, School of Chemical Technology, Aalto University, Aalto, Finland.
Sci Rep. 2013;3:1460. doi: 10.1038/srep01460.
Controlling chirality in growth of single-walled carbon nanotubes (SWNTs) is important for exploiting their practical applications. For long it has been conceptually conceived that the structural control of SWNTs is potentially achievable by fabricating nanoparticle catalysts with proper structures on crystalline substrates via epitaxial growth techniques. Here, we have accomplished epitaxial formation of monometallic Co nanoparticles with well-defined crystal structure, and its use as a catalyst in the selective growth of SWNTs. Dynamics of Co nanoparticles formation and SWNT growth inside an atomic-resolution environmental transmission electron microscope at a low CO pressure was recorded. We achieved highly preferential growth of semiconducting SWNTs (~90%) with an exceptionally large population of (6, 5) tubes (53%) in an ambient CO atmosphere. Particularly, we also demonstrated high enrichment in (7, 6) and (9, 4) at a low growth temperature. These findings open new perspectives both for structural control of SWNTs and for elucidating the growth mechanisms.
控制单壁碳纳米管(SWNTs)的手性对于开发其实际应用非常重要。长期以来,人们一直从概念上认为,通过在结晶衬底上使用适当结构的外延生长技术制造具有适当结构的纳米颗粒催化剂,可以实现 SWNTs 的结构控制。在这里,我们已经完成了具有明确定晶结构的单金属 Co 纳米颗粒的外延形成,并且将其用作 SWNTs 选择性生长的催化剂。在低 CO 压力下,在原子分辨率环境透射电子显微镜中记录了 Co 纳米颗粒形成和 SWNT 生长的动力学。我们在环境 CO 气氛中实现了具有极高半导体 SWNTs(~90%)的高选择性生长,其中(6,5)管(53%)的含量异常高。特别地,我们还在较低的生长温度下证明了(7,6)和(9,4)的高富集。这些发现为 SWNTs 的结构控制和阐明生长机制开辟了新的视角。