articleTop 1% cited
Current saturation in zero-bandgap, top-gated graphene field-effect transistors
Nature Nanotechnology · 2008 · Vol. 3(11) · pp. 654–659
Inanc Meric✉(Columbia University)Melinda Han(Columbia University)Andrea F. Young(Columbia University)Barbaros Özyilmaz(Columbia University)Philip Kim(Columbia University)Kenneth L. Shepard(Columbia University)
Graphene research and applicationsQuantum and electron transport phenomenaThermal properties of materialsGrapheneMaterials scienceTransistorBand gapField-effect transistorSaturation velocityOptoelectronicsVelocity saturationPhononSaturation (graph theory)
MeSH terms
CarbonElectric ConductivityElectrochemistryEquipment DesignMaterials TestingPolycyclic Aromatic HydrocarbonsTransistors, ElectronicElectric CapacitanceNanotechnologyNanostructures
Funding
- Semiconductor Research Corporation
- Office of Naval Research
Citations
1,608
FWCI
47.22
field-weighted impact
References
33
Percentile
100%
vs. same field & year
Citations per year
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References
Carbon-based electronics
Nature Nanotechnology · 2007 · 2,483 citations
Electron and hole drift velocity measurements in silicon and their empirical relation to electric field and temperature
IEEE Transactions on Electron Devices · 1975 · 641 citations
Electric Field Effect in Atomically Thin Carbon Films
Science · 2004 · 65,340 citations
Detection of individual gas molecules adsorbed on graphene
Nature Materials · 2007 · 7,891 citations
Monitoring dopants by Raman scattering in an electrochemically top-gated graphene transistor
Nature Nanotechnology · 2008 · 3,538 citations
Experimental observation of the quantum Hall effect and Berry's phase in graphene
Nature · 2005 · 13,274 citations
Energy Band-Gap Engineering of Graphene Nanoribbons
Physical Review Letters · 2007 · 5,147 citations
Two-dimensional gas of massless Dirac fermions in graphene
Nature · 2005 · 21,193 citations
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