High aspect ratio carbon nanotubes are ideal candidates to improve the resolution and lifetime of atomic force microscopy (AFM) probes. Here, we present simple methods for the preparation of carbon nanotube modified AFM probes utilising solvent evaporation or dielectrophoresis. Scanning electron microscopy (SEM) of the modified probes shows that the carbon nanotubes attach to the probe apex as fibres and display a high aspect ratio. Many of the probes made in this manner were initially found to exhibit anomalous feedback characteristics during scanning, which rendered them unsuitable for imaging. However, we further developed and demonstrated a simple method to stabilise the carbon nanotube fibres by scanning with high force in tapping mode...
Previous studies have shown that when using carbon nanotubes (CNTs) as tapping-mode AFM probes, thei...
[[abstract]]Abstract A simple, practical, and reliable method has been developed to bend the carbon ...
Carbon nanotubes (CNTs) possess unique electrical, thermal, and mechanical properties which have led...
High aspect ratio carbon nanotubes are ideal candidates to improve the resolution and lifetime of at...
High aspect ratio carbon nanotubes are ideal candidates to improve the resolution and lifetime of at...
In this work PeakForce tapping (PFT) imaging was demonstrated with carbon nanotube atomic force micr...
Atomic force microscopes (AFM) are commonly used to map the surface structure and topography of diff...
Carbon nanotubes are potentially ideal atomic force microscopy probes because they can have diameter...
Carbon nanotubes are considered to be an ideal imaging tip for atomic force microscopy (AFM) applica...
Carbon nanotubes, which have intrinsically small diameters and high aspect ratios and which buckle r...
We present a fast, high yield, low cost method for the production of scanning probes with aligned ca...
This thesis concerns the manufacture of carbon nanotube atomic force microscope (NTAFM) probes and t...
In this work PeakForce tapping (PFT) imaging was demonstrated with carbon nanotube atomic force micr...
A simple and reliable catalyst patterning technique combined with electric-field-guided growth is ut...
The development of atomic force microscopy (AFM) over the past 20 years has had a major impact on ma...
Previous studies have shown that when using carbon nanotubes (CNTs) as tapping-mode AFM probes, thei...
[[abstract]]Abstract A simple, practical, and reliable method has been developed to bend the carbon ...
Carbon nanotubes (CNTs) possess unique electrical, thermal, and mechanical properties which have led...
High aspect ratio carbon nanotubes are ideal candidates to improve the resolution and lifetime of at...
High aspect ratio carbon nanotubes are ideal candidates to improve the resolution and lifetime of at...
In this work PeakForce tapping (PFT) imaging was demonstrated with carbon nanotube atomic force micr...
Atomic force microscopes (AFM) are commonly used to map the surface structure and topography of diff...
Carbon nanotubes are potentially ideal atomic force microscopy probes because they can have diameter...
Carbon nanotubes are considered to be an ideal imaging tip for atomic force microscopy (AFM) applica...
Carbon nanotubes, which have intrinsically small diameters and high aspect ratios and which buckle r...
We present a fast, high yield, low cost method for the production of scanning probes with aligned ca...
This thesis concerns the manufacture of carbon nanotube atomic force microscope (NTAFM) probes and t...
In this work PeakForce tapping (PFT) imaging was demonstrated with carbon nanotube atomic force micr...
A simple and reliable catalyst patterning technique combined with electric-field-guided growth is ut...
The development of atomic force microscopy (AFM) over the past 20 years has had a major impact on ma...
Previous studies have shown that when using carbon nanotubes (CNTs) as tapping-mode AFM probes, thei...
[[abstract]]Abstract A simple, practical, and reliable method has been developed to bend the carbon ...
Carbon nanotubes (CNTs) possess unique electrical, thermal, and mechanical properties which have led...