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Global minima of transition metal clusters described by Finnis-Sinclair potentials: A comparison with semi-empirical molecular orbital theory.
- Source :
- Philosophical Magazine; 12/1/2009, Vol. 89 Issue 34-36, p3311-3332, 22p, 2 Diagrams, 3 Charts, 5 Graphs
- Publication Year :
- 2009
-
Abstract
- We present putative global minimum energy structures for nanoscopic transition metal clusters, with sizes ranging from N = 3 to 100 atoms, described by the original embedded atom potential of Finnis and Sinclair (FS), using their parameter sets for molybdenum and iron, and compare selected results with predictions from semi-empirical molecular orbital (SE-MO) theory via further optimization using the AM1* and PM6 Hamiltonians. We find that, for Fe clusters, the global minima found for the FS potential consist mainly of polyicosahedral structures with magic numbers N = 13, 19, 23, 26, 29, 39, 60 and 78, whereas, for Mo clusters with sizes N > 30, they are more likely to be bcc terminated by {110} and {100}-type surface facets. We find that the global minimum energy structures obtained for the FS potential are, in general, very good starting points for further SE-MO optimization, although the relative ordering of the resulting structures by energy compared to those obtained from global minima of other potentials used to model metal clusters does not, in general, agree. [ABSTRACT FROM AUTHOR]
- Subjects :
- TRANSITION metals
MOLYBDENUM
IRON
METAL clusters
SIMULATION methods & models
Subjects
Details
- Language :
- English
- ISSN :
- 14786435
- Volume :
- 89
- Issue :
- 34-36
- Database :
- Complementary Index
- Journal :
- Philosophical Magazine
- Publication Type :
- Academic Journal
- Accession number :
- 45542478
- Full Text :
- https://doi.org/10.1080/14786430903270668