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Phys. Rev. B 68, 144107 (2003) [7 pages]

Structure and energetics of the vacancy in graphite

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A. A. El-Barbary1,*, R. H. Telling1, C. P. Ewels1,2, M. I. Heggie1, and P. R. Briddon3
1CPES, University of Sussex, Falmer, Brighton, BN1 9QJ, United Kingdom
2Laboratoire de Physique des Solides (UMR CNRS 8502), Building 510, Paris Sud, Université 91405 Orsay, France
3Physics Centre, School of Natural Science, Newcastle upon Tyne, NE1 7RU, United Kingdom

Received 21 February 2003; revised 22 May 2003; published 15 October 2003

We determine properties of the vacancy in graphite from first principles calculations. The ground-state structure is associated with a formation energy of 7.4 eV and arises through a combination of symmetric relaxation and symmetry-breaking Jahn-Teller distortion to one of three degenerate, symmetry-related structures. The distortion results in a weak reconstructed bond and small out-of-plane atomic displacements. Dynamic switching between degenerate structures is activated by a barrier of 0.1 eV and we interpret scanning tunneling microscopy observations on the basis of thermal averaging between structures. The calculated migration energy of 1.7 eV is lower than that widely accepted from experiment, and we propose that the discrepancy is explained by a revised picture of trapping during vacancy transport, dependent on concentration. We discuss the significance of these findings in understanding defect behavior in irradiated graphite and related graphitic materials, in particular single-walled nanotubes.

© 2003 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.68.144107
DOI:
10.1103/PhysRevB.68.144107
PACS:
61.72.Ji, 61.80.Az, 81.05.Uw, 28.41.Pa

*Present address: CPES, Dept. of Chemistry, University of Sussex, Falmer, Brighton, BN1 9QJ, Sussex, United Kingdom. Electronic address: a.a.e.el-barbary@sussex.ac.uk