Back to Search Start Over

Binding energy and electronic structure of small copper particles

Authors :
E. J. Baerends
Donald E Ellis
B. Delley
Arthur J Freeman
D. Post
Faculty of Science
Source :
Baerends, E J, Delley, B, Ellis, D E, Freeman, A J & Post, D 1983, ' Binding energy and electronic structure of small copper particles ', Physical Review B. Condensed Matter, vol. 27, no. 4, pp. 2132-2144 ., Physical Review B. Condensed Matter, 27(4), 2132-2144. American Institute of Physics Publising LLC
Publication Year :
1983
Publisher :
American Physical Society (APS), 1983.

Abstract

The equilibrium geometry, binding energy, and electronic structure of small metal particles are investigated using self-consistent one-electron local-density theory. Results for ${\mathrm{Cu}}_{2}$, ${\mathrm{Cu}}_{4}$, and fcc ${\mathrm{Cu}}_{13}$ and ${\mathrm{Cu}}_{79}$ clusters show an increasing equilibrium bond length with cluster size, and a stiffening of the ${a}_{1}$ vibrational force constants. The calculated binding energies of 1.05 (${\mathrm{Cu}}_{2}$), 1.26 (${\mathrm{Cu}}_{4}$), 2.19 (${\mathrm{Cu}}_{13}$), and 3.03 (${\mathrm{Cu}}_{79}$) eV/atom compare well with the experimental values of 1.00 (${\mathrm{Cu}}_{2}$) and 3.50 (bulk) eV/atom. For ${\mathrm{Cu}}_{2}$ the theoretical bond length and vibrational frequency are found to be in good agreement with experiment. Densities of states and core-level shifts are analyzed to display cluster-size effects. Charge-density maps are used to display the buildup of metallic bonding charge with increasing particle size.

Details

ISSN :
01631829
Volume :
27
Database :
OpenAIRE
Journal :
Physical Review B
Accession number :
edsair.doi.dedup.....3fb8984d8081ca1ee86b3bf072858842
Full Text :
https://doi.org/10.1103/physrevb.27.2132