• DocumentCode
    885213
  • Title

    Experimental observation and quantum modeling of electron irradiation on single-wall carbon nanotubes

  • Author

    Charlier, J.-C. ; Terrones, M. ; Banhart, F. ; Grobert, N. ; Terrones, H. ; Ajayan, P.M.

  • Author_Institution
    Univ. Catholique de Louvain, Louvain-la-Neuve, Belgium
  • Volume
    2
  • Issue
    4
  • fYear
    2003
  • Firstpage
    349
  • Lastpage
    354
  • Abstract
    In situ experiments, based on electron irradiation at high temperature in a transmission electron microscope, are used to investigate isolated, packed and crossing single-wall nanotubes. During continuous, uniform atom removal, surfaces of isolated single-wall nanotubes heavily reconstruct leading to drastic dimensional changes. In bundles, coalescence of single-wall nanotubes is observed and induced by vacancies via a zipper-like mechanism. "X", "Y", and "T" carbon nanostructures are also fabricated by covalently connecting crossed single-wall nanotubes in order to pave the way toward controlled fabrication of nanotube based molecular junctions and network architectures exhibiting exciting electronic and mechanical behavior. Each experiment is followed by quantum modeling in order to investigate the effect of the irradiation process at the atomic level.
  • Keywords
    carbon nanotubes; dangling bonds; electron beam effects; surface reconstruction; vacancies (crystal); C; coalescence; electron irradiation; quantum modeling; single-wall carbon nanotubes; transmission electron microscope; uniform atom removal; zipper-like mechanism; Atomic layer deposition; Carbon nanotubes; Fabrication; Joining processes; Lattices; Mechanical factors; Nanostructures; Surface reconstruction; Temperature; Transmission electron microscopy;
  • fLanguage
    English
  • Journal_Title
    Nanotechnology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-125X
  • Type

    jour

  • DOI
    10.1109/TNANO.2003.820519
  • Filename
    1264893