Structure of Al(100)-c(2x2)-Li: A binary surface alloy

Citation
Jh. Petersen et al., Structure of Al(100)-c(2x2)-Li: A binary surface alloy, PHYS REV B, 60(8), 1999, pp. 5963-5968
Citations number
25
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
PHYSICAL REVIEW B-CONDENSED MATTER
ISSN journal
01631829 → ACNP
Volume
60
Issue
8
Year of publication
1999
Pages
5963 - 5968
Database
ISI
SICI code
0163-1829(19990815)60:8<5963:SOAABS>2.0.ZU;2-K
Abstract
The atomic geometry of the Al(100)-c(2x2)-Li phase formed by adsorption of 1/2-ML Li on Al(100) at room temperature has been determined by analysis of extensive low energy electron-diffraction (LEED) measurements. The structu re is found to be a binary surface alloy, in which Li atoms occupy fourfold -coordinated substitutional sites formed by displacing every second Al atom in the first layer of the substrate. The surface structure is very similar to the (100! plane of the metastable, bulk Al3Li alloy. An analysis of exp erimental LEED data for clean Al(100) leads to the conclusions that the fir st interlayer spacing is expanded by about 2% with respect to the bulk valu e, and that the vibrations of Al atoms in the first layer are about twice a s large as for atoms in the bulk. Adsorption of Li leads to a contraction o f nearly 6% of the first Al-Al interlayer spacing, and further enhances the vibrations of Al atoms in the first, mixed Al/Li layer [S0163-1829(99)1633 1-8].