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Formation and evolution of sp2 clusters in amorphous carbon networks as predicted by molecular dynamics annealing simulations

Belov, A. Y.; Jäger, H. U.

Abstract

A comparative study of clustering of sp2 -bonded atoms in the as-deposited and annealed diamond-like amorphous carbon (DLC) films is presented. The as-deposited DLC with a grown-in compressive stress of ~10 GPa is modelled using amorphous networks generated by ion-beam film deposition simulations with a modified hydrocarbon potential of Brenner. The DLC networks were annealed in the temperature range of 600-2000 K, using molecular-dynamics with the same interatomic potential. The size and type of the sp2 clusters were analysed as a function of the annealing temperature and simulation parameters. An essential finding of this study is that at the density less than 3.0 g/cm3 the structure of DLC can become unstable with respect to formation of large sp2 clusters. In particular, molecular-dynamics simulations show how the small sp2 clusters coalesce, forming the large ones. The influence of the sp2 clustering on the mechanical properties of DLC is also discussed.

Keywords: diamond-like carbon; molecular-dynamics; sp2 clustering; mechanical properties

  • Poster
    15th European Conference on Diamond, Diamond-Like Materials, Carbon Nanotubes, Nitrides & Silicon Carbide, 12-17 Sept. 2004, Riva Del Garda, Trentino, Italy

Permalink: https://www.hzdr.de/publications/Publ-6112