Liu Qingfeng, Ren Wencai, Chen Zhi-Gang, Wang Da-Wei, Liu Bilu, Yu Bing, Li Feng, Cong Hongtao, Cheng Hui-Ming
Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, People's Republic of China.
ACS Nano. 2008 Aug;2(8):1722-8. doi: 10.1021/nn8003394.
High-quality single-walled carbon nanotubes (SWNTs) with tunable diameters were synthesized by an improved H(2)/CH(4)-based floating catalyst method. Transmission electron microscopy observations and Raman results demonstrated the overall quality of the as-synthesized samples with finely tailored large diameters at 1.28, 1.62, 1.72, 1.91, and 2.13 nm, depending on the experimental conditions. In addition, Raman analysis revealed that the abundance of specific (n, m) SWNTs could be selectively enriched simultaneously along with the diameter modulation. It was found that the selective etching effects of high hydrogen flow stabilized the decomposition of ultralow CH(4) flow and considerably suppressed the deposition of amorphous carbon and small nanotubes, leading to very pure samples with high structural homogeneity suitable for further applications in practical electronic systems.
通过改进的基于H₂/CH₄的浮动催化剂法合成了具有可调直径的高质量单壁碳纳米管(SWNTs)。透射电子显微镜观察和拉曼结果表明,根据实验条件,所合成样品的整体质量良好,其大直径精细调整为1.28、1.62、1.72、1.91和2.13 nm。此外,拉曼分析表明,特定(n,m)单壁碳纳米管的丰度可以在直径调制的同时被选择性富集。研究发现,高氢气流的选择性蚀刻作用稳定了超低CH₄气流的分解,并显著抑制了无定形碳和小纳米管的沉积,从而得到了结构均匀性高、纯度非常高的样品,适用于实际电子系统的进一步应用。