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Electronic properties of graphene

physica status solidi (b) · 2007 · Vol. 244(11) · pp. 4106–4111
Kostya S. NovoselovС. В. МорозовT. M. G. MohinddinЛ. А. ПономаренкоD. C. EliasRui YangI. I. BarbolinaPeter BlakeTimothy J. BoothDa JiangJos GiesbersE.W. HillA. K. Geǐm

Abstract

Abstract Graphene is the first example of truly two‐dimensional crystals – it's just one layer of carbon atoms. It turns out that graphene is a gapless semiconductor with unique electronic properties resulting from the fact that charge carriers in graphene obey linear dispersion relation, thus mimicking massless relativistic particles. This results in the observation of a number of very peculiar electronic properties – from an anomalous quantum Hall effect to the absence of localization. It also provides a bridge between condensed matter physics and quantum electrodynamics and opens new perspectives for carbon‐based electronics. (© 2007 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)

Graphene research and applicationsCarbon Nanotubes in CompositesFullerene Chemistry and ApplicationsGrapheneGapless playbackSemiconductorCondensed matter physicsCharge carrierPhysicsCharge (physics)Massless particleGraphene nanoribbonsDispersion relation

Funding

  • Royal Society
  • Conselho Nacional de Desenvolvimento Científico e Tecnológico
Citations
416
FWCI
4.25
field-weighted impact
References
39
Percentile
96%
vs. same field & year
Citations per year
References
Ultra-thin epitaxial films of graphite and hexagonal boron nitride on solid surfaces
Journal of Physics Condensed Matter · 1997 · 611 citations
The rise of graphene
Nature Materials · 2007 · 39,026 citations
Helical microtubules of graphitic carbon
Nature · 1991 · 42,584 citations
The Band Theory of Graphite
Physical Review · 1947 · 4,824 citations
Electronic properties of disordered two-dimensional carbon
Physical Review B · 2006 · 1,425 citations
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