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Topographic images of individual molecules were collected using an atomic force microscope (Veeco Metrology Group) in tapping mode.
Nucleation of films was observed by using an atomic force microscope.
The surface morphology was investigated by using an atomic force microscope (AFM).
After the oxidation treatment, the unoxidised face was carefully examined by using an atomic force microscope.
A dominant parameter to determine material removal rate is investigated and surface quality is evaluated using an atomic force microscope.
The surface morphology of deposited spots was observed using an atomic force microscope and a scanning electron microscope.
A quasi-static bending test technique for these nanobeams was developed using an atomic force microscope (AFM).
The mechanical properties of these films were analyzed using an atomic force microscope (AFM) in conjunction with Hysitron Triboscope.
Using an atomic force microscope (AFM) this interaction was measured for 1,4-polyisoprene (PI, MW = 1.9 10.2 kDa).
Microstructure observation was performed using an atomic force microscope (AFM) to identify the surface roughness related to the adhesion properties.
Wear experiments were performed using an atomic force microscope (AFM), a ball-on-flat tribometer, and a water jet apparatus to verify multiscale wear resistance.
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