Hostname: page-component-76fb5796d-vfjqv Total loading time: 0 Render date: 2024-04-28T10:28:18.223Z Has data issue: false hasContentIssue false

Iron Silicide Nanostructures Prepared by E-Gun Evaporation and Annealing on Si(001)

Published online by Cambridge University Press:  05 March 2013

György Molnár
Affiliation:
Institute of Technical Physics and Materials Science, Research Centre for Natural Sciences, HAS, Budapest, H-1525 P.O. Box 49, Hungary,
László Dózsa
Affiliation:
Institute of Technical Physics and Materials Science, Research Centre for Natural Sciences, HAS, Budapest, H-1525 P.O. Box 49, Hungary,
Zofia Vértesy
Affiliation:
Institute of Technical Physics and Materials Science, Research Centre for Natural Sciences, HAS, Budapest, H-1525 P.O. Box 49, Hungary,
Zsolt J. Horváth
Affiliation:
Institute of Technical Physics and Materials Science, Research Centre for Natural Sciences, HAS, Budapest, H-1525 P.O. Box 49, Hungary, Óbuda University, Kandó Kálmán Faculty of Electrical Engineering, Institute of Microelectronics and Technology, H-1084 Budapest,Tavaszmező u. 15-17, Hungary
Get access

Abstract

Papers in the Appendix were published in electronic format as Volume 1534

Type
Articles
Copyright
Copyright © Materials Research Society 2013 

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

Alharbi, F., Bass, J. D., Salhi, A., Alyamani, A., Kim, H. C., and Miller, R. D., Renew. Energ. 36, 2753 (2011).CrossRefGoogle Scholar
Shaban, M., Nakashima, K., Yokoyama, W., and Yoshitake, T., Jap. J. Appl. Phys. 46, L667 (2007).CrossRefGoogle Scholar
Dalapati, G. K., Liew, S. L., Wong, A. S. W., Chai, Y., Chiam, S. Y., and Chi, D. Z., Appl. Phys. Lett. 98, 013507 (2011).CrossRefGoogle Scholar
Buonassisi, T., Istratov, A. A., Marcus, M. A., Lai, B., Cai, Z., Heald, S. M., and Weber, E. R., Nature Materials 4, 676 (2005).CrossRefGoogle Scholar
Terasawa, S., Inoue, T., and Ihara, M., Solar Energy Materials & Solar Cells 93, 215 (2009).CrossRefGoogle Scholar
Migas, D. B., and Miglio, L., Phys. Rev. B 62, 11063 (2000).CrossRefGoogle Scholar
Yamaguchi, K., and Mizushima, K., Phys. Rev. Lett. 86, 6006 (2001).CrossRefGoogle Scholar
Mäder, K. A., von Känel, H., and Baldereschi, A., Phys. Rev. B 48, 4364 (1993).CrossRefGoogle Scholar
von Känel, H., Mäder, K. A., Müller, E., Onda, N., and Sirringhaus, H., Phys. Rev. B 45, 13807 (1992).CrossRefGoogle Scholar
Jedrecy, N., Waldhauer, A., Sauvage-Simkin, M., Pinchaux, R., and Zheng, Y., Phys. Rev. B 49, 4725 (1994).CrossRefGoogle Scholar
Villars, P., and Calvert, L. D., Pearson’s Handbook of Crystallographic Data for Intermetallic Phases, Vol. 3, (American Society for Metals, Metals Park, OH 1985) p. 2232.Google Scholar
Molnár, G., Dózsa, L., Pető, G., Vértesy, Z., Koós, A. A., Horváth, Z. E., and Zsoldos, E., Thin Solid Films 459, 48 (2004).CrossRefGoogle Scholar
Barabási, A. L., Appl. Phys. Lett. 70, 2565 (1997).CrossRefGoogle Scholar
Tersoff, J., and LeGoues, F. K., Phys. Rev. Lett. 72, 3570 (1994).CrossRefGoogle Scholar
Vouroutzis, N., Zorba, T. T., Dimitriadis, C. A., Paraskevopoulos, K. M., Dózsa, L. and Molnár, G., J. Alloys Compounds 448, 202 (2008).CrossRefGoogle Scholar
Zinke-Allmang, M., Thin Solid Films 346, 1 (1999).CrossRefGoogle Scholar
Wünstel, K., and Wagner, P., Appl. Phys. A 27, 207 (1982).CrossRefGoogle Scholar