Effect of charge-transfer complex on the energy level alignment between graphene and organic molecules

  • Bae, Giyeol
  • Jung, Hyun
  • Park, Noejung
  • Park, Jinwoo
  • Hong, Suklyun
  • ... Park, Wanjun
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초록

We performed density-functional theory calculations to study the electronic structures at the interfaces between graphene and organic molecules that have been used in organic light-emitting diodes. In terms of work function, graphene itself is not favorable as either anode or cathode for commonly used electron or hole transport molecular species. However, the formation of charge transfer complex on the chemically inert sp(2) carbon surface can provide a particular advantage. Unlike metal surfaces, the graphene surface remains non-bonded to electron-accepting molecules even after electron transfer, inducing an improved Fermi-level alignment with the highest-occupied-molecular-orbital level of the hole-injecting-layer molecules.

키워드

AlignmentCharge transferElectronic structureLight emitting diodesMolecules
제목
Effect of charge-transfer complex on the energy level alignment between graphene and organic molecules
저자
Bae, GiyeolJung, HyunPark, NoejungPark, JinwooHong, SuklyunPark, Wanjun
DOI
10.1063/1.4709428
발행일
2012-04
유형
Article
저널명
Applied Physics Letters
100
18
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1 ~ 4