International audiencePeakForce Quantitative Nanomechanical Mapping (QNM) AFM mode was used to explore the mechanical properties of textured chitin-silica hybrid films at the nanoscale. The influence of the force applied by the tip on the sample surface was studied for standard homogeneous samples, for chitin nanorods and for chitin-silica hybrid nanocomposites. Thick films of superimposed chitin nanorods showed a monotonous increase of DMT modulus (based on the Derjaguin-Muller-Toporov model) owing to an increase in modulus at the interface between nanorods due to geometrical constraints of the AFM acquisition. A similar variation of DMT modulus was obtained for chitin-silica hybrid thick films related to mechanical strengthening induced b...
The potentials of AFM dynamic force spectroscopy for quantitative local mechanical property mapping ...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
Ultrasonic force microscopy (UFM) is an atomic force microscopy (AFM)-related technique originally i...
International audiencePeakForce Quantitative Nanomechanical Mapping (QNM) AFM mode was used to explo...
International audienceLocal mechanical properties of submicron features are of particular interest d...
PeakForceTM quantitative nanomechanical mapping (QNMTM) is a new atomic force microscopy technique f...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface ...
Copyright © 2015, American Concrete Institute. All rights reserved. Nanoindentation, quantitative mo...
International audienceNanomechanical properties of alginate/chitosan (Alg/Chi) multilayer films, obt...
<p>The elasticity of the organic matrix associated with <i>N. curvilineata</i> (a), <i>S. turris</i>...
Metal surfaces coated with organic layers are innovative materials with high potential for many indu...
In this study, nanomechanical properties of a variety of polymeric materials was investigated by mea...
Atomic force microscopy (AFM) has been widely used to acquire surface topography upon different scan...
The potentials of AFM dynamic force spectroscopy for quantitative local mechanical property mapping ...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
Ultrasonic force microscopy (UFM) is an atomic force microscopy (AFM)-related technique originally i...
International audiencePeakForce Quantitative Nanomechanical Mapping (QNM) AFM mode was used to explo...
International audienceLocal mechanical properties of submicron features are of particular interest d...
PeakForceTM quantitative nanomechanical mapping (QNMTM) is a new atomic force microscopy technique f...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface ...
Copyright © 2015, American Concrete Institute. All rights reserved. Nanoindentation, quantitative mo...
International audienceNanomechanical properties of alginate/chitosan (Alg/Chi) multilayer films, obt...
<p>The elasticity of the organic matrix associated with <i>N. curvilineata</i> (a), <i>S. turris</i>...
Metal surfaces coated with organic layers are innovative materials with high potential for many indu...
In this study, nanomechanical properties of a variety of polymeric materials was investigated by mea...
Atomic force microscopy (AFM) has been widely used to acquire surface topography upon different scan...
The potentials of AFM dynamic force spectroscopy for quantitative local mechanical property mapping ...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
Ultrasonic force microscopy (UFM) is an atomic force microscopy (AFM)-related technique originally i...