Nanoscale electronics seeks to decrease the critical dimension of devices in order to improve performance while reducing power consumption. Single-walled carbon nanotubes fit well with this strategy because, in addition to their molecular size, they demonstrate a number of unique electronic, mechanical and electromechanical properties. In particular, theory predicts that strain can have a large effect on the band structure of a nanotube, which, in turn, has an influence on its electron transport properties. This has been demonstrated in experiments where axial strain was applied by a scanning probe. Theory also predicts that torsional strain can influence transport properties, which was observed recently in multiwalled nanotubes13. Here we ...
The effects of mechanical deformation on the electron transport behavior of carbon nanotubes (CNTs) ...
n Abstract We review the recent progress in our understanding of the mechani-cal and electrical prop...
Multi-walled carbon nanotubes (MWCNTs) show an oscillation in electrical resistance (from I–V measur...
We report on the characterization of nanometer-scale torsional devices based on individual single-wa...
We report on the characterization of nanometer-scale torsional devices based on individual single-wa...
We report on the characterization of torsional oscillators which use multiwalled carbon nanotubes as...
We report on the characterization of torsional oscillators which use multiwalled carbon nanotubes as...
The research work evolved in this dissertation presents (i) a foundational study on the atomic struc...
A computationally-effective approach for calculating the electromechanical behavior of SWNTs and MWN...
A computationally-effective approach for calculating the electromechanical behavior of SWNTs and MWN...
Carbon nanotubes (CNTs) can be metallic or semiconductors depending simply on geometric characterist...
Carbon nanotubes (CNTs) can be metallic or semiconductors depending simply on geometric characterist...
The experiments in this thesis present a foundational study of a nanoelectromechanical system that d...
The experiments in this thesis present a foundational study of a nanoelectromechanical system that d...
The effects of mechanical deformation on the electron transport behavior of carbon nanotubes (CNTs) ...
The effects of mechanical deformation on the electron transport behavior of carbon nanotubes (CNTs) ...
n Abstract We review the recent progress in our understanding of the mechani-cal and electrical prop...
Multi-walled carbon nanotubes (MWCNTs) show an oscillation in electrical resistance (from I–V measur...
We report on the characterization of nanometer-scale torsional devices based on individual single-wa...
We report on the characterization of nanometer-scale torsional devices based on individual single-wa...
We report on the characterization of torsional oscillators which use multiwalled carbon nanotubes as...
We report on the characterization of torsional oscillators which use multiwalled carbon nanotubes as...
The research work evolved in this dissertation presents (i) a foundational study on the atomic struc...
A computationally-effective approach for calculating the electromechanical behavior of SWNTs and MWN...
A computationally-effective approach for calculating the electromechanical behavior of SWNTs and MWN...
Carbon nanotubes (CNTs) can be metallic or semiconductors depending simply on geometric characterist...
Carbon nanotubes (CNTs) can be metallic or semiconductors depending simply on geometric characterist...
The experiments in this thesis present a foundational study of a nanoelectromechanical system that d...
The experiments in this thesis present a foundational study of a nanoelectromechanical system that d...
The effects of mechanical deformation on the electron transport behavior of carbon nanotubes (CNTs) ...
The effects of mechanical deformation on the electron transport behavior of carbon nanotubes (CNTs) ...
n Abstract We review the recent progress in our understanding of the mechani-cal and electrical prop...
Multi-walled carbon nanotubes (MWCNTs) show an oscillation in electrical resistance (from I–V measur...