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July 19, 2006Physical Review Letters644 citations

Charge Carriers in Few-Layer Graphene Films

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SLSylvain LatilLHLuc Henrard

Key Points

  • This research aims to investigate the charge carriers in few-layer graphenes and their relationship with stacking geometry.
  • Conducted transport measurements on few-layer graphites to analyze charge carriers.
  • Performed density functional calculations to evaluate electronic band dispersion near the Fermi level.
  • Examined the influence of the number of layers and stacking patterns on charge carrier behavior.
  • Ambipolar transport occurs solely in few-layer graphene with a Bernal-like stacking pattern.
  • Other stacking geometries exhibit either simple-carrier or semiconducting behavior.
  • Electronic band dispersion is highly sensitive to both the number of layers and stacking geometry.

Abstract

The nature of the charge carriers in 2D few-layer graphites (FLGs) has been recently questioned by transport measurements K. S. Novoselov, Science 306, 666 (2004)10.1126/science.1102896 and a strong ambipolar electric field effect has been revealed. Our density functional calculations demonstrate that the electronic band dispersion near the Fermi level, and consequently the nature of the charge carriers, is highly sensitive to the number of layers and the stacking geometry. We show that the experimentally observed ambipolar transport is only possible for an FLG with a Bernal-like stacking pattern, whereas simple-carrier or semiconducting behavior is predicted for other geometries.

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Cite This Study

Latil et al. (2006) studied this question.

synapsesocial.com/papers/6a3f0b2bbc5541264908ce7fhttps://doi.org/10.1103/physrevlett.97.036803
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