Approaching ballistic transport in suspended graphene.
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Summary
This work shows that the fluctuations are significantly reduced in suspended graphene samples and reports low-temperature mobility approaching 200,000 cm2 V-1 s-1 for carrier densities below 5 x 109 cm-2, which cannot be attained in semiconductors or non-suspended graphene.
- Type
- letter
- Published
- 2008-02-20
- Cited by
- 3,065
- References
- 38
- Access
- Open access
- OpenAlex
- https://openalex.org/W2141484758
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8672655
Keywords
Graphene, Materials science, Semiconductor, Condensed matter physics, Substrate (aquarium)
References
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- Shot noise in graphene.
- Charge transport and inhomogeneity near the minimum conductivity point in graphene
- Sub-Poissonian shot noise in graphene.
- Exchange-induced charge inhomogeneities in rippled neutral graphene
- Electronic transport in graphene : A semiclassical approach including midgap states
- Ultrahigh electron mobility in suspended graphene
- Electrostatic interactions between graphene layers and their environment
- Observation of anomalous phonon softening in bilayer graphene.
- Carrier transport in two-dimensional graphene layers.
- Electron transport in graphene
- Midgap states and charge inhomogeneities in corrugated graphene
- Modeling extended contacts for nanotube and graphene devices
- Subharmonic gap structure in short ballistic graphene junctions
- Electromechanical Resonators from Graphene Sheets
- Electronic properties of disordered two-dimensional carbon
- Measurement of scattering rate and minimum conductivity in graphene.
- Specular Andreev reflection in graphene.
- Electric Field Effect in Atomically Thin Carbon Films
- The structure of suspended graphene sheets
Cited by
- Quantum charge transport in 10-nanometer scale suspended graphene transistors
- Magneto-transport properties of gapped graphene
- Electronic structure and carrier mobility in graphdiyne sheet and nanoribbons: theoretical predictions.
- Micrometer-scale ballistic transport in encapsulated graphene at room temperature.
- Terahertz conductivity of reduced graphene oxide films.
- Enhanced Mechanical Properties of Graphene/Copper Nanocomposites Using a Molecular‐Level Mixing Process
- Ballistic-like supercurrent in suspended graphene Josephson weak links
- Direct synthesis of phosphorus and nitrogen co-doped monolayer graphene with air-stable n-type characteristics.
- Multilayer graphitic coatings for thermal stabilization of metallic nanostructures.
- Non-templated ambient nanoperforation of graphene: a novel scalable process and its exploitation for energy and environmental applications.
- Probing Crystallinity of Graphene Samples via the Vibrational Density of States.
- Ultrahigh Thermal Conductive yet Superflexible Graphene Films
- Engineering graphene and TMDs based van der Waals heterostructures for photovoltaic and photoelectrochemical solar energy conversion.
- Strong Graphene 3D Assemblies with High Elastic Recovery and Hardness
- Two-Dimensional Transition Metal Dichalcogenides and Their Charge Carrier Mobilities in Field-Effect Transistors
- Electron transport properties of graphene and graphene field-effect devices studied experimentally
- Theoretical and numerical modelling of electronic transport in nanostructures
- Noise Parameter Characterisation of Graphene Field Effect Transistors in the 2-8 GHz Frequency Range
- Graphene Nanoelectronics - From Synthesis to Device Applications.
- Thermal management of cotton fabrics by surface coating
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