In this paper we address the mechanical properties of carbon nanotubes anchored to atomic force microscopy (AFM) tips in a detailed analysis of experimental results and exhaustive description of a simple model. We show that volume elastic and surface adhesive forces both contribute to the dynamical AFM experimental signals. Their respective weights depend on the nanotube properties and on an experimental parameter: the oscillation amplitude. To quantify the elastic and adhesive contributions, a simple analytical model is used. It enables analytical expressions of the resonance frequency shift and dissipation that can be measured in the atomic force microscopy dynamical frequency modulation mode. It includes the nanotube adhesive contributio...
Resonant contact atomic force microscopy (resonant C-AFM) is used to quantitatively measure the elas...
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...
In this paper we address the mechanical properties of carbon nanotubes anchored to atomic force micr...
Imaging of surfaces with carbon nanotube probes in tapping mode results frequently in complex behavi...
Imaging of surfaces with carbon nanotube probes in tapping mode results frequently in complex behavi...
Applications based on Single Walled Carbon Nanotube (SWNT) are good example of the great need to con...
Carbon nanotubes (CNTs) possess unique electrical, thermal, and mechanical properties which have led...
AFM force curve measurements have been performed on layers of entangled multiwall carbon nanotubes, ...
International audienceWe study the physics of adhesion and the contact mechanics at the nanoscale wi...
Mechanical response of carbon nanotube atomic force microscope probes are investigated using a therm...
We introduce a method for atomic force microscopy (AFM)-based detection of mechanical resonances in ...
Carbon nanotube (CNT) tips in tapping mode atomic force microscopy (AFM) enable very high-resolution...
The adhesion of long, straight, single-walled carbon nanotubes to surfaces is examined usingmultidim...
A popular technique for characterizing the mechanical properties of carbon nanotubes is to apply a o...
Resonant contact atomic force microscopy (resonant C-AFM) is used to quantitatively measure the elas...
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...
In this paper we address the mechanical properties of carbon nanotubes anchored to atomic force micr...
Imaging of surfaces with carbon nanotube probes in tapping mode results frequently in complex behavi...
Imaging of surfaces with carbon nanotube probes in tapping mode results frequently in complex behavi...
Applications based on Single Walled Carbon Nanotube (SWNT) are good example of the great need to con...
Carbon nanotubes (CNTs) possess unique electrical, thermal, and mechanical properties which have led...
AFM force curve measurements have been performed on layers of entangled multiwall carbon nanotubes, ...
International audienceWe study the physics of adhesion and the contact mechanics at the nanoscale wi...
Mechanical response of carbon nanotube atomic force microscope probes are investigated using a therm...
We introduce a method for atomic force microscopy (AFM)-based detection of mechanical resonances in ...
Carbon nanotube (CNT) tips in tapping mode atomic force microscopy (AFM) enable very high-resolution...
The adhesion of long, straight, single-walled carbon nanotubes to surfaces is examined usingmultidim...
A popular technique for characterizing the mechanical properties of carbon nanotubes is to apply a o...
Resonant contact atomic force microscopy (resonant C-AFM) is used to quantitatively measure the elas...
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...