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Theoretical Studies of Clean and Hydrogenated Diamond (100) by Molecular Mechanics

Authors :
RICE UNIV HOUSTON TX DEPT OF CHEMISTRY
Yang, Yuemei L.
D'Evelyn, Mark P.
RICE UNIV HOUSTON TX DEPT OF CHEMISTRY
Yang, Yuemei L.
D'Evelyn, Mark P.
Source :
DTIC AND NTIS
Publication Year :
1992

Abstract

The atomic structure and energetics of the clean (100)-(2x1), (100)- (2x1):H monohydride, (100)-(1x1):2H full dihydride, (100)-(3x1): 1.33H intermediate dihydride, and other intermediate hydride surfaces obtained by local removal of H atoms from or addition of H atoms to the (2x1) monohydride, are investigated by molecular mechanics (MM3). The monohydride phase is found to be the most stable thermodynamically and is predicted to be the dominant phase under chemical vapor deposition conditions. Gas-surface reactions relevant to diamond chemical vapor deposition involving hydrogen and the diamond (100)-(2x1) :H surface are discussed in light of the derived energetics.

Details

Database :
OAIster
Journal :
DTIC AND NTIS
Notes :
text/html, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn832017361
Document Type :
Electronic Resource