Yang Seong Ho, Shin Weon Ho, Lee Jung Woo, Kim Se Yun, Woo Seong Ihl, Kang Jeung Ku
Nano Materials Simulation and Fabrication Laboratory, Department of Materials Science and Engineering, KAIST, 373-1, Guseong-dong, Yuseong-gu, Daejeon 305-701, Korea.
J Phys Chem B. 2006 Jul 20;110(28):13941-6. doi: 10.1021/jp061895q.
Interaction of a transition metal atom with defects in single-walled carbon nanotubes (SWNTs) were investigated through density functional theory calculations. For three kinds of intrinsic defects (single vacancies, double vacancies and Stone-Wales defects) in (5,5) armchair and (10,0) zigzag SWNTs, stable configurations were analyzed. The orientation of the specific bonds of the defects is related to the most stable configuration among several possible configurations. The stable adsorption sites and binding energies of a Ni atom on three intrinsic defects were calculated and compared to those on perfect side walls. All defects enhance Ni adsorption, and the single vacancy shows the most exothermic binding. These results shed light on the nature of the interaction of the transition metal with defects in SWNT, an important topic to the many aspects of carbon nanotubes interacting with transition metals. Particularly, this is useful for the fabrication of nanosized transition metal particles supported on carbon nanotubes.
通过密度泛函理论计算研究了过渡金属原子与单壁碳纳米管(SWNTs)中的缺陷之间的相互作用。对于(5,5)扶手椅型和(10,0)锯齿型SWNTs中的三种本征缺陷(单空位、双空位和斯通-威尔士缺陷),分析了其稳定构型。缺陷特定键的取向与几种可能构型中最稳定的构型有关。计算了Ni原子在三种本征缺陷上的稳定吸附位点和结合能,并与在完美侧壁上的进行了比较。所有缺陷都增强了Ni的吸附,单空位表现出最放热的结合。这些结果揭示了过渡金属与SWNT中缺陷相互作用的本质,这是碳纳米管与过渡金属相互作用诸多方面的一个重要课题。特别是,这对于制备负载在碳纳米管上的纳米级过渡金属颗粒很有用。