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Electrical conductivity of PFPA functionalized graphene

  • P. Plachinda
  • , D. Evans
  • , R. Solanki

Research output: Contribution to journalArticlepeer-review

12 Scopus citations

Abstract

Chemical modification of graphene by covalently functionalizing its surface potentially allows a wider flexibility in engineering electronic structure, in particular the local density of states of the carbon atoms bound to the modifier that can result in opening of the band gap. Such binding can involve covalent hydrogenation of graphene to modify hybridization of carbon atoms from sp 2 to sp3 geometry [1-3]. Methods have also been developed to functionalize graphene covalently with molecular species [4-8]. Among these, perfluorophenylazide (PFPA) functionalization of graphene is well-developed using a nitrene intermediate. Films of this molecule also act as adhesion layers that allow production of long ribbons of exfoliated graphene [7-9]. We have developed a theory to predict electrical properties of PFPA functionalized graphene and compared it to experimental results. Conductivity of these PFPA functionalized ribbons of exfoliated graphene show good agreement with our theory.

Original languageEnglish
Pages (from-to)262-267
Number of pages6
JournalSolid-State Electronics
Volume79
DOIs
StatePublished - Jan 2013

Keywords

  • Graphene
  • Molecular electronics
  • Quantum transport

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