• Title of article

    Effects of defects and non-coordinating molecular overlayers on the work function of graphene and energy-level alignment with organic molecules Original Research Article

  • Author/Authors

    Giyeol Bae، نويسنده , , Janghwan Cha، نويسنده , , Hoonkyung Lee، نويسنده , , Wanjun Park، نويسنده , , Noejung Park، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    6
  • From page
    851
  • To page
    856
  • Abstract
    To elucidate the features of graphene as an electrode material, we studied the effect of defects and molecular overlayers on the work function of graphene using density-functional theory. We found that in-plane geometrical deformations (such as Stone–Thrower–Wales defects, carbon vacancies, and hydrogenated edges) have only a marginal effect. In contrast, intercalated alkaline atoms (K or Li) and overlayers of superhalogen species (BF4 and PF6) radically change the work function. We show that the geometry of the sp2 carbon surface remains robust after electron transfer to superhalogens, and the Fermi level could be well aligned with the energy levels of organic molecules. These methods for work function control can be used for the application of graphene materials as transparent electrodes for organic light-emitting devices.
  • Journal title
    Carbon
  • Serial Year
    2012
  • Journal title
    Carbon
  • Record number

    1123840