One dimensional band structure limit is applied on monolayer graphene nanoribbon homo-junction. The parabolic band energy approximation on graphene nanoribbon in low energy limit is assumed which means carrier movement can be presumed as a ballistic transport. Two graphene nanoribbon with different width are projected as metallic and semiconducting components of a homo-junction schottky diode. Finally analytical model of junction current-voltage (I-V), graphene nanoribbon width effects on carrier transport also physical parameters, such as drain voltage, gate voltage are presented. Comparison study between presented model and conventional diodes indicates smaller effective turn-on voltage of the graphene nanoribbon schottky diode
Focusing on the potential applications of tailored graphene nanoribbons (t-GNRs), in this work, we s...
Using first-principles quantum transport simulations, this work examines changes in the total elect...
Recent development of trilayer graphene nanoribbon Schottky-barrier field-effect transistors (FETs) ...
Graphene has incredible carrier transport property with high application opportunity at single molec...
This paper is all about the current-voltage modeling of Bilayer Graphene Nanoribbons (BGNRs) Schottk...
Low dimensional transmission coefficient as a main transport factor need to be explored in this work...
In this paper, the opportunities offered by monoatomic layers of graphene for the fabrication of hig...
In this paper, the opportunities offered by monoatomic layers of graphene for the fabrication of hig...
In this paper, the opportunities offered by monoatomic layers of graphene for the fabrication of hig...
One-dimensional nanostructures of graphene such as graphene nanoribbons (GNRs) can prove attractive ...
Graphene, a monolayer carbon atoms arranged in hexagonal honeycomb lattice possesses impressive elec...
Abstract Planar carbon-based electronic devices, including metal/semiconductor junctions, transistor...
Many experimental measurements have been done on GNR conductance. In this paper, analytical model of...
Graphene, a single-sheet layer of graphite hold interesting property such as high electron mobility....
Focusing on the potential applications of tailored graphene nanoribbons (t-GNRs), in this work, we s...
Focusing on the potential applications of tailored graphene nanoribbons (t-GNRs), in this work, we s...
Using first-principles quantum transport simulations, this work examines changes in the total elect...
Recent development of trilayer graphene nanoribbon Schottky-barrier field-effect transistors (FETs) ...
Graphene has incredible carrier transport property with high application opportunity at single molec...
This paper is all about the current-voltage modeling of Bilayer Graphene Nanoribbons (BGNRs) Schottk...
Low dimensional transmission coefficient as a main transport factor need to be explored in this work...
In this paper, the opportunities offered by monoatomic layers of graphene for the fabrication of hig...
In this paper, the opportunities offered by monoatomic layers of graphene for the fabrication of hig...
In this paper, the opportunities offered by monoatomic layers of graphene for the fabrication of hig...
One-dimensional nanostructures of graphene such as graphene nanoribbons (GNRs) can prove attractive ...
Graphene, a monolayer carbon atoms arranged in hexagonal honeycomb lattice possesses impressive elec...
Abstract Planar carbon-based electronic devices, including metal/semiconductor junctions, transistor...
Many experimental measurements have been done on GNR conductance. In this paper, analytical model of...
Graphene, a single-sheet layer of graphite hold interesting property such as high electron mobility....
Focusing on the potential applications of tailored graphene nanoribbons (t-GNRs), in this work, we s...
Focusing on the potential applications of tailored graphene nanoribbons (t-GNRs), in this work, we s...
Using first-principles quantum transport simulations, this work examines changes in the total elect...
Recent development of trilayer graphene nanoribbon Schottky-barrier field-effect transistors (FETs) ...