articlePhysical Review LettersNov 22, 2006GREEN OA

Renormalization of Molecular Electronic Levels at Metal-Molecule Interfaces

Lawrence Berkeley National Laboratory · Columbia University · +1 more institution

PubMed
Indexed inarxivcrossrefpubmed

Abstract

The electronic structure of benzene on graphite (0001) is computed using the GW approximation for the electron self-energy. The benzene quasiparticle energy gap is predicted to be 7.2 eV on graphite, substantially reduced from its calculated gas-phase value of 10.5 eV. This decrease is caused by a change in electronic correlation energy, an effect completely absent from the corresponding Kohn-Sham gap. For weakly coupled molecules, this correlation energy change can be described as a surface polarization effect. A classical image potential model illustrates the impact for other conjugated molecules on graphite.

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872
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29.50
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100%
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Authors

3

Topics & keywords

Keywords
  • Renormalization
  • Molecule
  • Quasiparticle
  • Benzene
  • Graphite
  • Band gap
  • Materials science
  • Electronic structure
UN Sustainable Development Goals
  • Affordable and clean energy
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