Abstract Elastomeric nanostructures are normally expected to fulfill an explicit mechanical role and therefore their mechanical properties are pivotal to affect material performance. Their versatile applications demand a thorough understanding of the mechanical properties. In particular, the time dependent mechanical response of low-density polyolefin (LDPE) has not been fully elucidated. Here, utilizing state-of-the-art PeakForce quantitative nanomechanical mapping jointly with force volume and fast force volume, the elastic moduli of LDPE samples were assessed in a time-dependent fashion. Specifically, the acquisition frequency was discretely changed four orders of magnitude from 0.1 up to 2 k Hz. Force data were fitted with a linearized ...
Methods based on the atomic force microscope (AFM) were implemented or developed to measure and map ...
The development of polymer-based nanocomposites to be used in critical thermal environments requires...
Ce mémoire présente une étude des propriétés de polymères à petite (nano) échelle, par les modes de ...
Recently several atomic force microscopy (AFM)-based surface property mapping techniques like pulsed...
Recently several atomic force microscopy (AFM)-based surface property mapping techniques like pulsed...
Recently several atomic force microscopy (AFM)-based surface property mapping techniques like pulsed...
AFM nanoindentations show a dependence of penetration, i.e., the relative motion between the sample ...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
Knowledge of material properties at the nanoscale is essential for the development of many new mater...
This report presents a study of polymers nanoscale properties using Atomic Force Microscopy in ampli...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface...
Nano-indentation is an interesting tool for analyzing nano-scale mechanical properties. The analysi...
A new method to determine the elastic modulus of a material using the atomic force microscope (AFM) ...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface ...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
Methods based on the atomic force microscope (AFM) were implemented or developed to measure and map ...
The development of polymer-based nanocomposites to be used in critical thermal environments requires...
Ce mémoire présente une étude des propriétés de polymères à petite (nano) échelle, par les modes de ...
Recently several atomic force microscopy (AFM)-based surface property mapping techniques like pulsed...
Recently several atomic force microscopy (AFM)-based surface property mapping techniques like pulsed...
Recently several atomic force microscopy (AFM)-based surface property mapping techniques like pulsed...
AFM nanoindentations show a dependence of penetration, i.e., the relative motion between the sample ...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
Knowledge of material properties at the nanoscale is essential for the development of many new mater...
This report presents a study of polymers nanoscale properties using Atomic Force Microscopy in ampli...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface...
Nano-indentation is an interesting tool for analyzing nano-scale mechanical properties. The analysi...
A new method to determine the elastic modulus of a material using the atomic force microscope (AFM) ...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface ...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
Methods based on the atomic force microscope (AFM) were implemented or developed to measure and map ...
The development of polymer-based nanocomposites to be used in critical thermal environments requires...
Ce mémoire présente une étude des propriétés de polymères à petite (nano) échelle, par les modes de ...