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Characterization of diamond (1 0 0) surface with oxygen termination

โœ Scribed by Run Long; Ying Dai; Meng Guo


Publisher
Elsevier Science
Year
2008
Tongue
English
Weight
381 KB
Volume
254
Category
Article
ISSN
0169-4332

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โœฆ Synopsis


Ab initio density functional theory (DFT) was employed to study reconstructions of diamond (1 0 0) surfaces in the presence of hydrogen, oxygen and hydroxyl. Clean and (2 ร‚ 1):1H surfaces are taken as reference. The properties of oxidization diamond surfaces with several adsorption structures, namely, O-on-top (OT) site, O-bridge (BR) site, hydroxyl (-OH), hydroxyl/hydroxyl, OT/hydroxyl, BR/hydroxyl have been considered. The calculated results indicate that the BR model is much more stable than the OT model, and the most energetically favorable structures of oxygenated surfaces are those with chemisorbed hydroxyl (-OH) group. Furthermore, the stability of the structures is also discussed from the point of HOMO-LUMO gap. Analysis of electronic structures shows that the presence of hydrogen induces surface conductivity whereas oxygen weakens it.


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โœ Yandong Ma; Hao Jin; Ying Dai; Baibiao Huang ๐Ÿ“‚ Article ๐Ÿ“… 2010 ๐Ÿ› Elsevier Science ๐ŸŒ English โš– 649 KB

In the present work, the diamond (1 0 0) surface is simulated by using a (2 ร‚ 1) supercell (Fig. ), which includes a slab consisting of 10 carbon layers with two C atoms per plane, plus