Structure of hydrogen-dosed graphene deduced from low electron energy loss characteristics and density functional calculations

We employed nanometer-scale spatially resolved electron energy loss spectroscopy to monitor the degree and localization of electronic passivation of graphene surfaces by using the π -plasmon as an indicator of sp 2 -bonding. Upon hydrogenation, the π -plasmon does not vanish, and a new feature at 7...

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Veröffentlicht in:Applied physics letters 2010-12, Vol.97 (25), p.253118-253118-3
Hauptverfasser: Bangert, U., Pan, C. T., Nair, R. R., Gass, M. H.
Format: Artikel
Sprache:eng
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Zusammenfassung:We employed nanometer-scale spatially resolved electron energy loss spectroscopy to monitor the degree and localization of electronic passivation of graphene surfaces by using the π -plasmon as an indicator of sp 2 -bonding. Upon hydrogenation, the π -plasmon does not vanish, and a new feature at 7 eV occurs in the spectra. This behavior conforms to the theoretical electron energy loss spectra derived from density functional calculations for partial hydrogenation, with benzene rings assuming a corrugated structure. The spatial distribution of the spectral features and atomic resolution Z-contrast images indicate absence of any long-range ordering in the hydrogenated areas.
ISSN:0003-6951
1077-3118
DOI:10.1063/1.3526373