Abstract Electrical transport in metallic carbon nanotubes, especially the ones with diameters of the order of a few nanometers can be best described using the Tomanaga Luttinger liquid (TL) model. Recently, the TL model has been used to create a convenient transmission line like phenomenological model for carbon nanotubes. In this paper, we have characterized metallic nanotubes based on that model, quantifying the quantum capacitances of individual metallic single walled carbon nanotubes and crystalline bundles of single walled tubes of different diameters. Our calculations show that the quantum capacitances for both individual tubes and the bundles show a weak dependence on the diameters of their constituent tubes. The nanotube bundles ex...
In this paper, a new circuit model for the propagation of electric signals along carbon nanotube int...
We present a comprehensive study of the electrochemical capacitance between a one-dimensional electr...
The intimate contact between the electrons in a carbon nanotube and solvated ions in a liquid electr...
Electrical transport in metallic carbon nanotubes, especially the ones with diameters of the order o...
In this paper, a method to obtain the quantum capacitance of carbon nanotubes (CNTs) using ab initio...
Expressions for the “quantum capacitance ” are derived, and regimes are discussed in which this conc...
The nature of the electronic interface between a nanotube and solvated ions in a liquid electrolyte ...
In this work, fundamental results on carrier statistics in a carbon nanotube treated as a one-dimens...
We report measurements of the quantum capacitance of individual semiconducting and small band gap si...
The work presented in this thesis will discuss transport measurements on individual single-walled na...
The electronic capacitance of a one-dimensional system suchas a carbon nanotube is a thermodynamic q...
Capacitances of molecules, fullerenes and carbon nanotubes under the condition of no electron-tunne...
Multiwall carbon nanotubes represent a low-dimensional material that could serve as building blocks ...
Carbon nanotubes are promising candidates for futuristic nanoelectronic applications. In this articl...
We present a comprehensive study of the electrochemical capacitance between a one-dimensional electr...
In this paper, a new circuit model for the propagation of electric signals along carbon nanotube int...
We present a comprehensive study of the electrochemical capacitance between a one-dimensional electr...
The intimate contact between the electrons in a carbon nanotube and solvated ions in a liquid electr...
Electrical transport in metallic carbon nanotubes, especially the ones with diameters of the order o...
In this paper, a method to obtain the quantum capacitance of carbon nanotubes (CNTs) using ab initio...
Expressions for the “quantum capacitance ” are derived, and regimes are discussed in which this conc...
The nature of the electronic interface between a nanotube and solvated ions in a liquid electrolyte ...
In this work, fundamental results on carrier statistics in a carbon nanotube treated as a one-dimens...
We report measurements of the quantum capacitance of individual semiconducting and small band gap si...
The work presented in this thesis will discuss transport measurements on individual single-walled na...
The electronic capacitance of a one-dimensional system suchas a carbon nanotube is a thermodynamic q...
Capacitances of molecules, fullerenes and carbon nanotubes under the condition of no electron-tunne...
Multiwall carbon nanotubes represent a low-dimensional material that could serve as building blocks ...
Carbon nanotubes are promising candidates for futuristic nanoelectronic applications. In this articl...
We present a comprehensive study of the electrochemical capacitance between a one-dimensional electr...
In this paper, a new circuit model for the propagation of electric signals along carbon nanotube int...
We present a comprehensive study of the electrochemical capacitance between a one-dimensional electr...
The intimate contact between the electrons in a carbon nanotube and solvated ions in a liquid electr...