Epitaxial Graphene on metals

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2012
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Horn, Karsten
Preobrajenski, Alexei
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RAZA, Hassan, ed.. Graphene nanoelectronics : metrology, synthesis, properties and applications. Heidelberg [u.a.]: Springer, 2012, pp. 189-234. ISBN 978-3-642-20467-8
Zusammenfassung

In this chapter, we review the recent results on graphene films epitaxially grown on 3d - 5d transition-metal surfaces focussing mainly on their atomic structure, aspects of chemical interaction both with the substrate and with adsorbates and the electronic structure of graphene at the interface. We discuss a possibility to prepare sandwich-like structures in the form of intercalates as a possible way to controllably tailor the electronic properties of graphene. Recent works on the templated growth of metallic nanostructures on graphene moire are also reviewed.

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ISO 690DEDKOV, Yuriy S., Karsten HORN, Alexei PREOBRAJENSKI, Mikhail FONIN, 2012. Epitaxial Graphene on metals. In: RAZA, Hassan, ed.. Graphene nanoelectronics : metrology, synthesis, properties and applications. Heidelberg [u.a.]: Springer, 2012, pp. 189-234. ISBN 978-3-642-20467-8
BibTex
@incollection{Dedkov2012Epita-19006,
  year={2012},
  title={Epitaxial Graphene on metals},
  isbn={978-3-642-20467-8},
  publisher={Springer},
  address={Heidelberg [u.a.]},
  booktitle={Graphene nanoelectronics : metrology, synthesis, properties and applications},
  pages={189--234},
  editor={Raza, Hassan},
  author={Dedkov, Yuriy S. and Horn, Karsten and Preobrajenski, Alexei and Fonin, Mikhail}
}
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    <dcterms:abstract xml:lang="eng">In this chapter, we review the recent results on graphene films epitaxially grown on 3d - 5d transition-metal surfaces focussing mainly on their atomic structure, aspects of chemical interaction both with the substrate and with adsorbates and the electronic structure of graphene at the interface. We discuss a possibility to prepare sandwich-like structures in the form of intercalates as a possible way to controllably tailor the electronic properties of graphene. Recent works on the templated growth of metallic nanostructures on graphene moire are also reviewed.</dcterms:abstract>
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