Published 1995 | Version v1
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Ion beam modification of buckminsterfullerene

  • 1. Melbourne Univ., Parkville, VIC (Australia). School of Physics
  • 2. Melbourne Univ., Parkville, VIC (Australia)
  • 3. Sydney Univ., NSW (Australia). Electron Microscope Unit
  • 4. Deakin Univ., Geelong, NSW (Australia). School of Chemical and Biological Sciences
  • 5. Technion-Israel Inst. of Tech., Haifa (Israel). Solid State Inst.

Description

The response of thin films of buckminsterfullerene (C60) to energetic xenon ion impact is investigated. The diagnostics employed include Fourier Transform Infrared and Raman Spectroscopies, Cross-Sectional Transmission Electron Microscopy, and Atomic Force Microscopy. By combining the information obtained from these diagnostics with that from the dependence of the conductivity on ion dose, it is concluded that each C60 molecule completely disintegrates when hit by an energetic ion. The cross-section for the destruction of about 7 x 10-13 cm 2 for irradiation with 620 keV Xe ions. The disintegration occurs when C atoms are knocked-out of the molecule either directly by the impinging ion or by an energetic knock-on C atom with the damage cascade. This process is quite different from the Coulomb Explosion mechanism previously proposed in the literature. For very low ions doses (< 1 x 10 11 Xe/cm2) most of the C60 molecules remain intact; however this dose is sufficient to completely disrupt the ordering of the C60 molecules in the van der Waals bonded C60 solid. Disruption of the lattice ordering at such low doses is considered to be attributable to the weakness of the van der Waals forces which bind the C60 clusters together into the molecular solid. 13 refs., 7 figs

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Publishing Information

Imprint Pagination
29 p.
Report number
UM-P--94/94