The atomic force microscope (AFM) can be used to measure mechanical properties of nanoscale objects, which are too small to be studied using a conventional nanoindenter. The contact mechanics at such small scales, in proximity of free surfaces, deviate substantially from simple continuum models. We present results from atomistic computer simulations of the indentation of gold nanorods using a diamond AFM tip and give insight in the atomic scale processes, involving creation and migration of dislocations, leading to the plastic deformation of the sample under load, and explain the force–distance curves observed for different tip apex radii of curvature, as well as different crystallographic structure and orientation of the gold nanorod sampl...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
Nanomechanical characterization of gold nanowires with a height of 160 nm, width of 350 nm and lengt...
Mechanical properties of nanoscale objects can be measured with an atomic force microscope (AFM) tip...
Mechanical properties of nanoscale objects can be measured with an atomic force microscope (AFM) tip...
© 2008 American Institute of Physics. The electronic version of this article is the complete one and...
Nanoindentation experiments carried out with atomic force microscopes (AFMs) open the way to underst...
Abstract. Atomic force microscopy (AFM) nanoindentation is presently not that widespread for the stu...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
In this paper, a developed three-dimensional Molecular Dynamics (MD) model for AFM-based nanomachini...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
We investigate the mechanics of nanometer scale indentation into an atomically flat metallic surface...
The possibility of using scanning force microscopy (SFM) to image monolayer arrays of nanometer diam...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
Nanomechanical characterization of gold nanowires with a height of 160 nm, width of 350 nm and lengt...
Mechanical properties of nanoscale objects can be measured with an atomic force microscope (AFM) tip...
Mechanical properties of nanoscale objects can be measured with an atomic force microscope (AFM) tip...
© 2008 American Institute of Physics. The electronic version of this article is the complete one and...
Nanoindentation experiments carried out with atomic force microscopes (AFMs) open the way to underst...
Abstract. Atomic force microscopy (AFM) nanoindentation is presently not that widespread for the stu...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
In this paper, a developed three-dimensional Molecular Dynamics (MD) model for AFM-based nanomachini...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
We investigate the mechanics of nanometer scale indentation into an atomically flat metallic surface...
The possibility of using scanning force microscopy (SFM) to image monolayer arrays of nanometer diam...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
Nanomechanical characterization of gold nanowires with a height of 160 nm, width of 350 nm and lengt...