We report a systematic investigation of the temperature dependence of electrical resistance behaviours in tri- and four-layer graphene interconnects. Nonlinear current–voltage characteristics were observed at different temperatures, which are attributed to the heating effect. With the resistance curve derivative analysis method, our experimental results suggest that Coulomb interactions play an essential role in our devices. The room temperature measurements further indicate that the graphene layers exhibit the characteristics of semiconductors mainly due to the Coulomb scattering effects. By combining the Coulomb and short-range scattering theory, we derive an analytical model to explain the temperature dependence of the resistance, ...
The Kubo formula for the electrical conductivity of per stratum of few-layer graphene, up to five, i...
Copyright © 2012 by the American Physical Society. A. S. Price, S. M. Hornett, A. V. Shytov, E. Hend...
A semi-classical electrodynamical model is derived to describe the electrical transport along graphe...
The temperature dependence of electric transport properties of single-layer and few-layer graphene a...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
The tight-binding Hamiltonian model and the Green’s function formalism have been employed to calcula...
Detailed experimental and theoretical studies of the temperature dependence of the effect of differe...
We use phenomenological modelling and detailed experimental studies of charge carrier transport to i...
The temperature dependence of electric transport properties of single-layer and few-layer graphene a...
Graphene membranes act as temperature sensors in nanoelectromechanical devices due to their excellen...
This paper investigates the electrical performance of innovative carbon-based nano-interconnects mad...
International audienceThe inter-layer resistance in few layer graphene (FLG) is an unknown intrinsic...
The temperature dependence of the zero-bias conductance of the graphene-based, ballistic junction co...
We have investigated the electron transport in graphene at different carrier densities. Single layer...
In this brief, we present a physics-based solution for the temperature-dependent electrical resistan...
The Kubo formula for the electrical conductivity of per stratum of few-layer graphene, up to five, i...
Copyright © 2012 by the American Physical Society. A. S. Price, S. M. Hornett, A. V. Shytov, E. Hend...
A semi-classical electrodynamical model is derived to describe the electrical transport along graphe...
The temperature dependence of electric transport properties of single-layer and few-layer graphene a...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
The tight-binding Hamiltonian model and the Green’s function formalism have been employed to calcula...
Detailed experimental and theoretical studies of the temperature dependence of the effect of differe...
We use phenomenological modelling and detailed experimental studies of charge carrier transport to i...
The temperature dependence of electric transport properties of single-layer and few-layer graphene a...
Graphene membranes act as temperature sensors in nanoelectromechanical devices due to their excellen...
This paper investigates the electrical performance of innovative carbon-based nano-interconnects mad...
International audienceThe inter-layer resistance in few layer graphene (FLG) is an unknown intrinsic...
The temperature dependence of the zero-bias conductance of the graphene-based, ballistic junction co...
We have investigated the electron transport in graphene at different carrier densities. Single layer...
In this brief, we present a physics-based solution for the temperature-dependent electrical resistan...
The Kubo formula for the electrical conductivity of per stratum of few-layer graphene, up to five, i...
Copyright © 2012 by the American Physical Society. A. S. Price, S. M. Hornett, A. V. Shytov, E. Hend...
A semi-classical electrodynamical model is derived to describe the electrical transport along graphe...