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Hydrogen induced surface metallization of $\beta$-SiC(100)-($3\times 2$) revisited by DFT calculations

Materials Science 2009-11-11 v1

Abstract

Recent experiments on the silicon terminated 3×23\times 2 SiC(100) surface indicated an unexpected metallic character upon hydrogen adsorption. This effect was attributed to the bonding of hydrogen to a row of Si atoms and to the stabilization of a neighboring dangling bond row. Here, on the basis of Density-Functional calculations, we show that multiple-layer adsorption of H at the reconstructed surface is compatible with a different geometry: besides saturating the topmost Si dangling bonds, H atoms are adsorbed at rather unusual sites, \textit{i.e.} stable bridge positions above third-layer Si dimers. The results thus suggest an alternative interpretation for the electronic structure of the metallic surface

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Cite

@article{arxiv.cond-mat/0502240,
  title  = {Hydrogen induced surface metallization of $\beta$-SiC(100)-($3\times 2$) revisited by DFT calculations},
  author = {R. Di Felice and C. M. Bertoni and C. A. Pignedoli and A. Catellani},
  journal= {arXiv preprint arXiv:cond-mat/0502240},
  year   = {2009}
}

Comments

10 pages, 3 figures. Higher resolution figures may be obtained from the authors ([email protected]). Submitted to Physical Review Letters in September 2004, resubmitted after revision in February 2005