Intercalation synthesis of cobalt silicide under a graphene layer

The silicon intercalation under single-layer graphene formed on the surface of an epitaxial Co(0001) film was investigated. The experiments were performed under conditions of ultra-high vacuum. The thickness of silicon films was varied within the range of up to 1 nm, and the temperature of their ann...

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Veröffentlicht in:Physics of the solid state 2016-10, Vol.58 (10), p.2135-2140
Hauptverfasser: Grebenyuk, G. S., Gomoyunova, M. V., Vilkov, O. Yu, Sen’kovskii, B. V., Pronin, I. I.
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Sprache:eng
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Zusammenfassung:The silicon intercalation under single-layer graphene formed on the surface of an epitaxial Co(0001) film was investigated. The experiments were performed under conditions of ultra-high vacuum. The thickness of silicon films was varied within the range of up to 1 nm, and the temperature of their annealing was 500°C. The characterization of the samples was carried out in situ by the methods of low-energy electron diffraction, high-energy-resolution photoelectron spectroscopy using synchrotron radiation, and magnetic linear dichroism in photoemission of Co 3 p electrons. New data were obtained on the evolution of the atomic and electronic structure, as well as on the magnetic properties of the system with an increase in the amount of intercalated silicon. It was shown that the intercalation under a graphene layer is accompanied by the synthesis of surface silicide Co 2 Si and a solid solution of silicon in cobalt.
ISSN:1063-7834
1090-6460
DOI:10.1134/S1063783416100164