Raman spectroscopy of nonstacked graphene flakes produced by plasma microjet deposition (Articolo in rivista)

Type
Label
  • Raman spectroscopy of nonstacked graphene flakes produced by plasma microjet deposition (Articolo in rivista) (literal)
Anno
  • 2012-01-01T00:00:00+01:00 (literal)
Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#doi
  • 10.1002/jrs.3111 (literal)
Alternative label
  • Passoni, M [ 1,2 ] ; Russo, V [ 1 ] ; Dellasega, D [ 1,2 ] ; Causa, F [ 3 ] ; Ghezzi, F [ 2 ] ; Wolverson, D [ 4 ] ; Bottani, CE [ 1,2 ] (2012)
    Raman spectroscopy of nonstacked graphene flakes produced by plasma microjet deposition
    in Journal of Raman spectroscopy (Online); WILEY-BLACKWELL, 111 RIVER ST, HOBOKEN 07030-5774, NJ (Stati Uniti d'America)
    (literal)
Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#autori
  • Passoni, M [ 1,2 ] ; Russo, V [ 1 ] ; Dellasega, D [ 1,2 ] ; Causa, F [ 3 ] ; Ghezzi, F [ 2 ] ; Wolverson, D [ 4 ] ; Bottani, CE [ 1,2 ] (literal)
Pagina inizio
  • 884 (literal)
Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#url
  • http://onlinelibrary.wiley.com/doi/10.1002/jrs.3111/pdf (literal)
Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#numeroVolume
  • 43 (literal)
Rivista
Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#numeroFascicolo
  • 7 (literal)
Note
  • ISI Web of Science (WOS) (literal)
Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#affiliazioni
  • [ 1 ] Politecn Milan, Dipartimento Energia, I-20133 Milan, Italy [ 2 ] EURATOM ENEA CNR Assoc, Consiglio Nazl Ric, Ist Fis Plasma, I-20125 Milan, Italy [ 3 ] Univ Messina, Dipartimento Protezionist Ambientale Sanita Socia, I-98122 Messina, Italy [ 4 ] Univ Bath, Dept Phys, Bath BA2 7AY, Avon, England (literal)
Titolo
  • Raman spectroscopy of nonstacked graphene flakes produced by plasma microjet deposition (literal)
Abstract
  • An extensive Raman investigation of few-layer graphene structures, obtained using a plasma microjet technique, is presented. Raman spectroscopy represents a unique method to characterize specific features of these systems. Excitation energies both in the visible and in the deep ultraviolet range are exploited, allowing to extract the main structural properties of the in-house deposited samples. Particular attention is given to the determination of the stacking order properties of these few-layer graphene structures. The results presented here also validate the plasma microjet as an efficient deposition technique to obtain graphene-based systems with a low number of layers and reduced coupling on well defined and spatially localized areas. Copyright (c) 2011 John Wiley & Sons, Ltd. (literal)
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