Hostname: page-component-76fb5796d-25wd4 Total loading time: 0 Render date: 2024-04-30T03:05:59.644Z Has data issue: false hasContentIssue false

Structure, Bonding and Stability of Transition Metal Silicides: A Real-Space Perspective by Tight Binding Potentials

Published online by Cambridge University Press:  10 February 2011

Leo Miglio
Affiliation:
Istituto Nazionale di Fisica della Materia and Università di Milano, Dipartimento di Scienza dei Materiali, 15 via Emanueli, I-20126 MILANO, Italy.
Francesca Tavazza
Affiliation:
Istituto Nazionale di Fisica della Materia and Università di Milano, Dipartimento di Scienza dei Materiali, 15 via Emanueli, I-20126 MILANO, Italy.
Antonio Garbelli
Affiliation:
Istituto Nazionale di Fisica della Materia and Università di Milano, Dipartimento di Scienza dei Materiali, 15 via Emanueli, I-20126 MILANO, Italy.
Massimo Celino
Affiliation:
Ente per le Nuove Tecnologie, ENEA, CRE della Casaccia, PO 2400, 00100 Roma, Italy
Get access

Abstract

We point out that the predictive power of tight binding potentials is not limited to obtaining fairly accurate total energy calculations and very satisfactory structural evolutions by molecular dynamics simulations. They also allow for a nice physical picture of the links between bonding and stability in different structures, which is particularly helpful in the case of binary suicides

Type
Research Article
Copyright
Copyright © Materials Research Society 1998

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

1. Galli, G., Current Opinion in Solid State & Mat Sci. 6, 864 (1996).Google Scholar
2. Hoffmann, R., Solids and Surfaces: A Chemist's view of Bonding in Extended Structures. VCH Publishers Inc., New York, 1988 Google Scholar
3. Pettifor, D., Bonding and Structure of Molecules and Solids. Claredon Press, Oxford, 1995.Google Scholar
4. Malegori, G. and Miglio, L., Phys. Rev B 48, 9223 (1993),Google Scholar
von Kaenel, H., Mendik, M., Maeder, K.A., Onda, N., Goncalves-Conto, S., and Schwarz, C., Malegori, G. and Miglio, L., Marabelli, F., Phys. Rev B 50, 3570 (1994).Google Scholar
5. Miglio, Leo and Malegori, Giovanna, Phys Rev B 52, 1448 (1995).Google Scholar
6. Miglio, Leo, Tavazza, Francesca and Malegori, Giovanna, Appl Phys Lett 67, 2293 (1995)Google Scholar
7. von Kaenel, H., Schwarz, C., Goncalves-Conto, S., Mueller, E., Miglio, L., Tavazza, F. and Malegori, G., Phys Rev Lett, 74, 1163 (1995)Google Scholar
8. Sanguinetti, S., Calegari, C., Velasco, V.R., Benedek, G., Tavazza, F. and Miglio, Leo, Physical Review B 54, 9196(1996).Google Scholar
9. Goncalves-Conto, S., Schaerer, U., Mueller, E. and von Kaenel, H., Miglio, L. and Tavazza, F., Phys. Rev. B 55, 7213 (1997).Google Scholar
10. Miglio, Leo, Meregalli, Valeria, Tavazza, Francesca and Celino, Massimo, Europhys. Lett. 37, 415 (1997); Francesca Tavazza, Valeria Meregalli, Leo Miglio and Massimo Celino, submitted to Phys. Rev. B.Google Scholar
11. Guizzetti, G., Marabelli, F., Patrini, M., Pellegrino, P., and Pivac, B., Miglio, Leo and Meregalli, V., Lange, H., Henrion, W., Tomm, V., Phys. Rev. B 55, 14290 (1997)Google Scholar
12. Fanciulli, M., Weyer, G. and Chevallier, J., von Kaenel, H., Deller, H. and Onda, N., Miglio, L., Tavazza, F. and Celino, M., Europhys. Lett. 37, 139 (1997)Google Scholar
13. Leong, D., Harry, M., Reeson, K.J., and Homewood, K.P., Nature 387, 686 (1997).Google Scholar
14. Eppenga, R., J Appl Phys 68, 3027(1990);Google Scholar
Eisebitt, S., Rubensson, J.E., Nicodemus, M., Böske, T., Blügel, S., Eberhardt, W., Radermacher, K., Mantl, S., and Bihlmeyer, G., Phys. Rev. B 50, 18330 (1994),Google Scholar
van Ek, J. and Turchi, P.E.A., Sterne, P.A., Phys. Rev. B 54, 7897 (1996);Google Scholar
Filonov, A.B., Migas, D.B., Shaposhnikov, V.L., Dorozhkin, N.N., Petrov, G.V., Borisenko, V.E., Henrion, W., and Lange, H. J. Appl. Phys. 79, 7708 (1996).Google Scholar
15. Dusausoy, Y., Protas, J., Wandji, R., and Roques, B., Acta Cristallogr Sect. B 27, 1209 (1971)Google Scholar
16. Christensen, N.E., Phys. Rev. B 42, 7148 (1990).Google Scholar
17. von Kaenel, H., Stalder, R., Sirringhaus, H., Onda, N., Henz, J., Appl. Surf. Sci. 53, 196 (1991);Google Scholar
Vazquez de Parga, A.L., De la Figuera, J., Ocal, C., Miranda, R., Europhys. Lett. 18, 595 (1992);Google Scholar
Thanh Vinh, Le, Chevrier, J., Derrien, J., Phys. Rev. B 46, 15946 (1992);Google Scholar
Schaefer, H. Ch., Roesen, B., Moritz, H, Rizzi, A, Lengeler, B., Luth, H., Gerthsen, D., Appl. Phys. Lett. 62, 2271 (1993).Google Scholar
Rizzi, A., Rösen, B.N.E., Freundt, D., Dieker, Ch., Lüth, H., and Gerthsen, D., Phys. Rev B 51, 17780 (1995).Google Scholar