Multiwall carbon nanotubes represent a low-dimensional material that could serve as building blocks for future carbon-based nanoelectronics. The understanding of the electromagnetic performances at radio frequency of these materials for use in nanointerconnects is strictly related to the analysis of their transport properties as function of the working conditions. In this paper, we present an explicit expression of the conducting channels as function of diameter, temperature, doping, and supply voltage for both metallic and semiconducting carbon nanotubes. The proposed formula is based on the Dirac cone approximation of the conducting band energy of graphene nearby the Fermi points, combined with the Landauer-Buttiker formalism. Simplified ...
Abstract—General equations are presented for the spatially dis-persive conductivity, distributed imp...
We report on electrical resistance measurements of an individual carbon nanotube down to a temperatu...
As carbon nanotubes (CNT) and graphene nanostructures (GNR) constitute the basis of high-speed nanoe...
This paper investigates the electrical behavior of vias made by bundles of either single-walled or m...
Carbon nanotubes (CNTs) are recently discovered materials made by rolled sheets of graphene of diame...
Abstract Electrical transport in metallic carbon nanotubes, especially the ones with diameters of th...
The equivalent single-conductor model of a multiwall carbon nanotube (MWCNT) interconnect is derived...
Electrical transport in metallic carbon nanotubes, especially the ones with diameters of the order o...
We have shown that the general theories of metals and semiconductors can be employed to understand t...
We propose a nonequilibrium Green's function approach to calculate the ac conductance of variou...
The correct evaluation of the number of conducting channels in multiwall carbon nanotubes (MWCNTs) i...
In the last twenty years, due to technological advances, it has become possible to build, manipulate...
Abstract—Fundamental properties of dipole transmitting an-tennas formed by carbon nanotubes are inve...
Using a scattering technique based on a parametrized linear combination of atomic orbitals Hamiltoni...
The electrical conductance of single- and double-wall carbon nanotube systems was measured by a mech...
Abstract—General equations are presented for the spatially dis-persive conductivity, distributed imp...
We report on electrical resistance measurements of an individual carbon nanotube down to a temperatu...
As carbon nanotubes (CNT) and graphene nanostructures (GNR) constitute the basis of high-speed nanoe...
This paper investigates the electrical behavior of vias made by bundles of either single-walled or m...
Carbon nanotubes (CNTs) are recently discovered materials made by rolled sheets of graphene of diame...
Abstract Electrical transport in metallic carbon nanotubes, especially the ones with diameters of th...
The equivalent single-conductor model of a multiwall carbon nanotube (MWCNT) interconnect is derived...
Electrical transport in metallic carbon nanotubes, especially the ones with diameters of the order o...
We have shown that the general theories of metals and semiconductors can be employed to understand t...
We propose a nonequilibrium Green's function approach to calculate the ac conductance of variou...
The correct evaluation of the number of conducting channels in multiwall carbon nanotubes (MWCNTs) i...
In the last twenty years, due to technological advances, it has become possible to build, manipulate...
Abstract—Fundamental properties of dipole transmitting an-tennas formed by carbon nanotubes are inve...
Using a scattering technique based on a parametrized linear combination of atomic orbitals Hamiltoni...
The electrical conductance of single- and double-wall carbon nanotube systems was measured by a mech...
Abstract—General equations are presented for the spatially dis-persive conductivity, distributed imp...
We report on electrical resistance measurements of an individual carbon nanotube down to a temperatu...
As carbon nanotubes (CNT) and graphene nanostructures (GNR) constitute the basis of high-speed nanoe...