Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1581567 | Materials Science and Engineering: A | 2008 | 7 Pages |
Abstract
Ab initio simulations of the adsorption of Al atoms on CaF2 (0Â 0Â 1) and (1Â 1Â 1) surfaces have been performed for supercells with 7 different atomic configurations, using density functional theory. For (1Â 1Â 1) surfaces, a repulsive interaction was observed for most configurations, while a weak attraction was obtained when the Al atom was placed above F atoms. For the Ca-terminated (0Â 0Â 1) surface, the adsorption energy was about 5 times larger, whereas for the F-terminated (0Â 0Â 1) surface it was about 20 times greater. The comparative analysis indicates that the (0Â 0Â 1) surfaces are reactive and have a strong Al adatom bonding (chemisorption), especially for the F-terminated substrate. On the contrary, the (1Â 1Â 1) plane may be considered as non-reactive (physisorption), having a weak bonding of the Al adatom above the F site.
Related Topics
Physical Sciences and Engineering
Materials Science
Materials Science (General)
Authors
S. Barzilai, N. Argaman, N. Froumin, D. Fuks, N. Frage,