Yang Seong Ho, Shin Weon Ho, Kang Jeung Ku
Laboratory of Nano Materials Simulation and Fabrication, Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Korea.
J Chem Phys. 2006 Aug 28;125(8):084705. doi: 10.1063/1.2337293.
Ni adsorption on Stone-Wales defect sites in (10,0) zigzag and (5,5) armchair single-wall carbon nanotubes was studied using the density functional theory. The stable adsorption sites and their binding energies on different Stone-Wales defect types were analyzed and compared to those on perfect side walls. It was determined that the sites formed via fusions of 7-7 and 6-7 rings are the most exothermic in the cases of (10,0) and (5,5) defective tubes. In addition C-C bonds associated with Stone-Wales defects are more reactive than the case for a perfect hexagon, thus enhancing the stability of the Ni adsorption. Moreover, the Ni adsorption was found to show a noticeable relationship to the orientation of the Stone-Wales defects with respect to the tube axis. The nature of the Ni adsorption on Stone-Wales defects that have the similar orientation is identical, in spite of the different chiralities.
利用密度泛函理论研究了镍在(10,0)锯齿形和(5,5)扶手椅形单壁碳纳米管的斯通-威尔士缺陷位点上的吸附情况。分析并比较了不同斯通-威尔士缺陷类型上的稳定吸附位点及其结合能与完美侧壁上的吸附位点和结合能。结果表明,在(10,0)和(5,5)缺陷管的情况下,由7-7和6-7环融合形成的位点是放热最多的。此外,与斯通-威尔士缺陷相关的C-C键比完美六边形的情况更具反应性,从而增强了镍吸附的稳定性。此外,发现镍吸附与斯通-威尔士缺陷相对于管轴的取向存在显著关系。尽管手性不同,但具有相似取向的斯通-威尔士缺陷上镍吸附的性质是相同的。