Calculations based on the first-principles pseudopotential plane-wave method and density-functional theory are performed to investigate the electronic properties of graphene, bilayer graphene, multilayer graphene, and graphite. From an analysis of the electronic band structure close to the Fermi level, we have quantified the gradual change in the Fermi surface topology from the point-like structure for graphene to a warped triangular shape for graphite. We have also discussed the gradual change in the electron and hole effective masses and velocities as the system evolves from graphene to graphite
Graphene, a two dimensional single layer of graphite, attracts a lot of attention of researchers aro...
Single-layer graphene has been widely researched in recent years due to its perceived technological ...
The full three-dimensional dispersion of the pi bands, Fermi velocities, and effective masses are me...
The electronic properties of hexagonal graphite have been studied in the framework of the density-fu...
In the frame work of density functional theoretical calculations, the electronic and lattice dynamic...
Single layers of carbon dubbed "graphene". from which graphite is built, have attracted broad intere...
The research on atomic scale solid state structures has developed into a highly dy-namic field that ...
This paper reviews the theoretical work undertaken using density functional theory (DFT) to explore ...
International Physics Conference at the Anatolian Peak (IPCAP) -- FEB 25-27, 2016 -- Ataturk Univ, N...
This thesis includes work done on graphene-based materials, examining their unique electronic proper...
Using density functional theory calculations we investigate the electronic structure of graphene dop...
The interest in graphene among researchers has not ceased since Novoselov and Geim published their f...
After discussion of basic concepts of the covalent chemical bond with applications to carbon, the ch...
Abstract The structural and electronic properties of bulk graphite were compared using density funct...
The structure and electronic characteristics of new polymorphic varieties of graphyne, obtained on t...
Graphene, a two dimensional single layer of graphite, attracts a lot of attention of researchers aro...
Single-layer graphene has been widely researched in recent years due to its perceived technological ...
The full three-dimensional dispersion of the pi bands, Fermi velocities, and effective masses are me...
The electronic properties of hexagonal graphite have been studied in the framework of the density-fu...
In the frame work of density functional theoretical calculations, the electronic and lattice dynamic...
Single layers of carbon dubbed "graphene". from which graphite is built, have attracted broad intere...
The research on atomic scale solid state structures has developed into a highly dy-namic field that ...
This paper reviews the theoretical work undertaken using density functional theory (DFT) to explore ...
International Physics Conference at the Anatolian Peak (IPCAP) -- FEB 25-27, 2016 -- Ataturk Univ, N...
This thesis includes work done on graphene-based materials, examining their unique electronic proper...
Using density functional theory calculations we investigate the electronic structure of graphene dop...
The interest in graphene among researchers has not ceased since Novoselov and Geim published their f...
After discussion of basic concepts of the covalent chemical bond with applications to carbon, the ch...
Abstract The structural and electronic properties of bulk graphite were compared using density funct...
The structure and electronic characteristics of new polymorphic varieties of graphyne, obtained on t...
Graphene, a two dimensional single layer of graphite, attracts a lot of attention of researchers aro...
Single-layer graphene has been widely researched in recent years due to its perceived technological ...
The full three-dimensional dispersion of the pi bands, Fermi velocities, and effective masses are me...