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Phys. Rev. B 77, 064115 (2008) [11 pages]

Defect structures in the silver halides

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D. J. Wilson1,2,*, A. A. Sokol1,2, S. A. French1,†, and C. R. A. Catlow1,2,‡
1Davy Faraday Research Laboratory, The Royal Institution of Great Britain, London, W1S 4BS
2Department of Chemistry, University College London, London, WC1H 0AJ

Received 2 July 2007; published 28 February 2008

We report a state of the art density functional theory study of the intrinsic defects within the rocksalt-structured silver halides. These materials are well known to favor Frenkel defect pairs over Schottky pairs—a key factor in their use as photographic materials. We report the defect structures and formation energies of the elementary point defects obtained using the supercell approximation. In agreement with recent experimental results, we find that the interstitial cation adopts a split-interstitial configuration, centered on a lattice site. The effects of electron or hole trapping on the defect centers in AgCl and AgBr are reported, including the formation energetics, structures, and spin localizations. Although limitations in the supercell method are evident, we have nevertheless obtained valuable new insights into the properties of these fascinating materials.

© 2008 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.77.064115
DOI:
10.1103/PhysRevB.77.064115
PACS:
61.72.J−, 71.15.Mb, 71.23.An

*Present address: Department of Geosciences, J. W. Goethe University, Frankfurt am Main, 60438 Germany.

Present address: Johnson Matthey Technology Centre, Sonning Common, RG4 9NH, U.K.

c.r.a.catlow@ucl.ac.uk