The Band Theory of Graphite
Explore this paper's citation graph
- Type
- article
- Published
- 1947-05-01
- Cited by
- 4,321
- References
- 0
- OpenAlex
- https://openalex.org/W2026237155
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:53633968
Keywords
Brillouin zone, Condensed matter physics, Electron, Diamagnetism, Graphite
References
No references recorded for this paper.
Cited by
- Magneto-optical spectroscopy of epitaxial graphene
- Effects of adsorbates on the electronic properties of graphene
- Contribution à la théorie du transport quantique : isolants topologiques à base de graphène et phénomènes à fréquence finie
- Electronic properties of two-dimensional carbon systems
- Novel properties of graphene nanoribbons: a review
- Synthesis and environmental chemistry of silver and iron oxide nanoparticles
- Development of electronic DNA hybridization detection using carbon nanotube field effect transistor arrays
- Flexural phonons in free-standing graphene.
- Graphene: nanoscale processing and recent applications.
- Density functional theory calculations on graphene/α-SiO2(0001) interface
- Single Nanotube Voltammetry: Current Fluctuations Are Due to Physical Motion of the Nanotube
- Spin diffusion and non-local spin-valve effect in an exfoliated multilayer graphene with a Co electrode
- Work Function Engineering of Graphene
- Flatbands and Emergent Ferromagnetic Ordering in Fe_3Sn_2 Kagome Lattices.
- Vers une électronique de spin cohérente de phase à base de nanotubes de carbone
- Optical properties of carbon based materials in high magnetic fields
- Electronic Properties and Structure of Functionalized Graphene
- Tunable graphene chem-FET and graphene/Si heterojunction chemi-diode sensors
- Theoretical and numerical modelling of electronic transport in nanostructures
- Synthèse et étude de la formation de pyramides et cônes de graphite par gravure en plasma radiofréquence argon/hydrogène
Related papers
- Free carrier absorption in highly conducting amorphous oxides
- The Electronic Structure of CdO I. The Energy‐Band Structure (APW Method)
- Empirical tight-binding model for the electronic structure of dilute GaNAs alloys
- Brillouin zone and band structure of β‐Ga2O3
- Electronic Band Structure of Rhenium Dichalcogenides
- Thin-film technique for the experimental determination of the elastic strain on the electron mean free path and on the free- electron density in bulk metals.
- Energy-band structure of semiconductors having the chalcopyrite lattice