The interplay between local mechanical strain energy and lateral frictional forces determines the shape of carbon nanotubes on substrates. In turn, because of its nanometer-size diameter, the shape of a carbon nanotube strongly influences its local electronic, chemical, and mechanical properties. Few, if any, methods exist for resolving the strain energy and static frictional forces along the length of a deformed nanotube supported on a substrate. We present a method using nonlinear elastic rod theory in which we compute the flexural strain energy and static frictional forces along the length of single walled carbon nanotubes (SWCNTs) manipulated into various shapes on a clean SiO2 substrate. Using only high resolution atomic force microsco...
The adhesion and friction between individual nanotubes was investigated in ambient using a dynamic a...
Carbon nanotubes are novel materials with unique electrical and mechanical properties. Here we prese...
The frictional properties of individual carbon nanotubes (CNTs) are studied by sliding an atomic for...
The interplay between local mechanical strain energy and lateral frictional forces determines the sh...
The interplay between local mechanical strain energy and lateral frictional forces determines the sh...
Carbon nanotubes (CNTs) have extraordinary electrical and mechanical properties, and many potential ...
Carbon nanotubes (CNTs) have extraordinary electrical and mechanical properties, and many potential ...
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 adhesion of long, straight, single-walled carbon nanotubes to surfaces is examined usingmultidim...
International audienceApplications based on Single Walled Carbon Nanotube (SWNT) are good example of...
International audienceThe physics of adhesion of one-dimensional nano structures such as nanotubes, ...
The adhesion and friction between individual nanotubes was investigated in ambient using a dynamic a...
A popular technique for characterizing the mechanical properties of carbon nanotubes is to apply a o...
In this study, atomic force microscope (AFM) tips are used as tools to cut and manipulate carbon nan...
The adhesion and friction between individual nanotubes was investigated in ambient using a dynamic a...
Carbon nanotubes are novel materials with unique electrical and mechanical properties. Here we prese...
The frictional properties of individual carbon nanotubes (CNTs) are studied by sliding an atomic for...
The interplay between local mechanical strain energy and lateral frictional forces determines the sh...
The interplay between local mechanical strain energy and lateral frictional forces determines the sh...
Carbon nanotubes (CNTs) have extraordinary electrical and mechanical properties, and many potential ...
Carbon nanotubes (CNTs) have extraordinary electrical and mechanical properties, and many potential ...
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 adhesion of long, straight, single-walled carbon nanotubes to surfaces is examined usingmultidim...
International audienceApplications based on Single Walled Carbon Nanotube (SWNT) are good example of...
International audienceThe physics of adhesion of one-dimensional nano structures such as nanotubes, ...
The adhesion and friction between individual nanotubes was investigated in ambient using a dynamic a...
A popular technique for characterizing the mechanical properties of carbon nanotubes is to apply a o...
In this study, atomic force microscope (AFM) tips are used as tools to cut and manipulate carbon nan...
The adhesion and friction between individual nanotubes was investigated in ambient using a dynamic a...
Carbon nanotubes are novel materials with unique electrical and mechanical properties. Here we prese...
The frictional properties of individual carbon nanotubes (CNTs) are studied by sliding an atomic for...