Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang, P. R. China.
ACS Nano. 2009 Nov 24;3(11):3421-30. doi: 10.1021/nn900799v.
We report on the observation of a very low growth velocity of single-walled carbon nanotubes (SWNTs) and consequently the direct length-sorted growth and patterned growth of SWNTs by using a metal-catalyst-free chemical vapor deposition (CVD) process proposed recently by our group, in which SiO(2) serves as catalyst. We found that the growth velocity of the SWNTs from SiO(2) catalyst is only 8.3 nm/s, which is about 300 times slower than that of the commonly used iron group catalysts (Co as a counterpart catalyst in this study). Such a slow growth velocity renders direct length-sorted growth of SWNTs, especially for short SWNTs with hundreds of nanometers in length. By simply adjusting the growth duration, SWNTs with average lengths of 149, 342, and 483 nm were selectively obtained and SWNTs as short as approximately 20 nm in length can be grown directly. Moreover, comparative studies indicate that the SiO(2) catalyst possesses a much longer catalytic active time, showing sharp contrast with the commonly used Co catalyst which quickly loses its catalytic activity. Taking advantage of the very slow growth velocity of the SiO(2) catalyst, patterned growth of SWNT networks confined in a narrow region of <5 microm was also achieved. The short SWNTs may show intriguing physics owing to their finite length effect and are attractive for various practical applications.
我们报告了一种非常低的单壁碳纳米管(SWNTs)生长速度的观察结果,并通过我们小组最近提出的一种无金属催化剂的化学气相沉积(CVD)工艺,直接对 SWNTs 进行了长度排序生长和图案化生长,其中 SiO2 用作催化剂。我们发现,从 SiO2 催化剂生长的 SWNTs 的生长速度仅为 8.3nm/s,比常用的铁族催化剂(在本研究中以 Co 作为对应催化剂)慢约 300 倍。如此缓慢的生长速度使得 SWNTs 可以直接进行长度排序生长,特别是对于长度只有数百纳米的短 SWNTs。通过简单地调整生长时间,可以选择性地获得平均长度为 149nm、342nm 和 483nm 的 SWNTs,并且可以直接生长长度约为 20nm 的 SWNTs。此外,比较研究表明,SiO2 催化剂具有更长的催化活性时间,与常用的 Co 催化剂形成鲜明对比,后者很快失去催化活性。利用 SiO2 催化剂非常缓慢的生长速度,还实现了限制在 <5 微米窄区域内的 SWNT 网络的图案化生长。由于短 SWNTs 的有限长度效应,它们可能具有有趣的物理性质,并且对各种实际应用具有吸引力。