Imaging of surfaces with carbon nanotube probes in tapping mode results frequently in complex behavior in the amplitude−distance curves monitored. Using molecular mechanics simulations, we calculate the force exerted on a nanotube pressed against a smooth surface as it undergoes deformation and buckling. This nonlinear force is then used in a macroscopic equation, describing the response of a damped harmonic oscillator, to predict the amplitude response of a nanotube AFM probe. Similarities between the prediction and experiment suggest that the complex amplitude response seen in the experiment may be explained by the nonlinearity in the force exerted on the nanotube and thus must not necessarily be related to the structure of the surface
When using single-walled carbon nanotube (SWNT) probes to create AFM images of SWNT samples in tappi...
In this work PeakForce tapping (PFT) imaging was demonstrated with carbon nanotube atomic force micr...
In this work PeakForce tapping (PFT) imaging was demonstrated with carbon nanotube 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...
Multiwalled carbon nanotube (MWCNT) atomic force microscope (AFM) probes were fabricated with contro...
Carbon nanotube (CNT) tips in tapping mode atomic force microscopy (AFM) enable very high-resolution...
In this paper we address the mechanical properties of carbon nanotubes anchored to atomic force micr...
Mechanical response of carbon nanotube atomic force microscope probes are investigated using a therm...
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...
The nonlinear dynamics of an atomic force microcantilever (AFM) with an attached multi-walled carbon...
AFM force curve measurements have been performed on layers of entangled multiwall carbon nanotubes, ...
The shear stiffness of carbon nanotubes was measured using a modified AFM. The technique uses a late...
We introduce a method for atomic force microscopy (AFM)-based detection of mechanical resonances in ...
When using single-walled carbon nanotube (SWNT) probes to create AFM images of SWNT samples in tappi...
In this work PeakForce tapping (PFT) imaging was demonstrated with carbon nanotube atomic force micr...
In this work PeakForce tapping (PFT) imaging was demonstrated with carbon nanotube 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...
Multiwalled carbon nanotube (MWCNT) atomic force microscope (AFM) probes were fabricated with contro...
Carbon nanotube (CNT) tips in tapping mode atomic force microscopy (AFM) enable very high-resolution...
In this paper we address the mechanical properties of carbon nanotubes anchored to atomic force micr...
Mechanical response of carbon nanotube atomic force microscope probes are investigated using a therm...
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...
The nonlinear dynamics of an atomic force microcantilever (AFM) with an attached multi-walled carbon...
AFM force curve measurements have been performed on layers of entangled multiwall carbon nanotubes, ...
The shear stiffness of carbon nanotubes was measured using a modified AFM. The technique uses a late...
We introduce a method for atomic force microscopy (AFM)-based detection of mechanical resonances in ...
When using single-walled carbon nanotube (SWNT) probes to create AFM images of SWNT samples in tappi...
In this work PeakForce tapping (PFT) imaging was demonstrated with carbon nanotube atomic force micr...
In this work PeakForce tapping (PFT) imaging was demonstrated with carbon nanotube atomic force micr...