Choi Yong Soo, Park Kyung Ah, Kim Changwook, Lee Young Hee
Department of Physics, Institute of Basic Science, Center for Nanotubes and Nanostructured Composites, Sungkyunkwan University, Suwon 440-746, Korea.
J Am Chem Soc. 2004 Aug 4;126(30):9433-8. doi: 10.1021/ja039917z.
We have investigated adsorption of an O(2) molecule on a double-walled carbon nanotube (DWCNT) edge using density functional theory calculations. An O(2) molecule adsorbs exothermally without an adsorption barrier at open nanotube edges that are energetically favorable with a large adsorption energy of about -9 eV in most cases. Dissociative adsorption of an O(2) molecule induces various spontaneous lip-lip interactions via the bridged carbon atoms, generating the closed tube ends. This explains why the DWCNTs are chemically more stable than the single-walled nanotubes during observed field emission experiments. The field emission takes place via the localized states of the bridged carbon atoms, not via those of the adsorbed oxygen atoms particularly in the armchair nanotubes. We also find that some O(2) precursor states exist as a bridge between tube edges.
我们使用密度泛函理论计算研究了O(2)分子在双壁碳纳米管(DWCNT)边缘的吸附情况。在开放的纳米管边缘,O(2)分子以放热方式吸附,且无吸附势垒,在大多数情况下,这些边缘在能量上是有利的,具有约-9 eV的大吸附能。O(2)分子的解离吸附通过桥连碳原子诱导各种自发的唇-唇相互作用,从而形成封闭的管端。这解释了为什么在观察到的场发射实验中,DWCNT在化学上比单壁纳米管更稳定。场发射通过桥连碳原子的局域态发生,特别是在扶手椅型纳米管中,而不是通过吸附氧原子的局域态发生。我们还发现一些O(2)前驱体状态作为管边缘之间的桥梁存在。