none7siQuantitative mapping of the mechanical properties of a series of polylactic acid/natural rubber/organoclay bionanocomposites has been accomplished by using nanoindentation with atomic force microscopy. Topography, elastic modulus and adhesion maps were obtained simultaneously revealing nanoscopic mechanical features in the samples associated to the different phases. For polylactic acid and polylactic acid/natural rubber a single distribution of Young's moduli was obtained whose maximum correlates well with the macroscopic measurements. Bionanocomposites with high organoclay loads exhibit a bimodal distribution of elastic moduli whose maxima can be associated to the polylactic acid matrix and to the reinforcing levels provided by the ...
[EN] Fast, high resolution and wide elastic modulus range mapping of heterogeneous interfaces repres...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface...
A novel approach combining the atomic force microscopy probing of nacre biopolymer strand and the in...
Quantitative mapping of the mechanical properties of a series of polylactic acid/natural rubber/orga...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
In the work presented here atomic force microscopy (AFM) based mechanical mapping techniques - Harmo...
AFM nanoindentations show a dependence of penetration, i.e., the relative motion between the sample ...
We present a novel Multi-Regime Analysis (MRA) routine for interpreting force indentation measuremen...
Abstract. We exploit the force spectroscopy capabilities of the atomic force microscope in character...
ABSTRACT: Strain hardening and self-reinforcement were observed from poly(N-isopropylacrylamide)(PNI...
The elastic moduli of a range of polymers were characterized by nanoindentation on an atomic force m...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface ...
International audienceA novel toughened polylactic acid (PLA) bionanocomposite with tuneable propert...
AbstractElastic modulus of commonly used excipient, i.e. microcrystalline cellulose (MCC) and an act...
Nanoindentation is ideal for the characterization of inhomogeneous biological materials. However, th...
[EN] Fast, high resolution and wide elastic modulus range mapping of heterogeneous interfaces repres...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface...
A novel approach combining the atomic force microscopy probing of nacre biopolymer strand and the in...
Quantitative mapping of the mechanical properties of a series of polylactic acid/natural rubber/orga...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
In the work presented here atomic force microscopy (AFM) based mechanical mapping techniques - Harmo...
AFM nanoindentations show a dependence of penetration, i.e., the relative motion between the sample ...
We present a novel Multi-Regime Analysis (MRA) routine for interpreting force indentation measuremen...
Abstract. We exploit the force spectroscopy capabilities of the atomic force microscope in character...
ABSTRACT: Strain hardening and self-reinforcement were observed from poly(N-isopropylacrylamide)(PNI...
The elastic moduli of a range of polymers were characterized by nanoindentation on an atomic force m...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface ...
International audienceA novel toughened polylactic acid (PLA) bionanocomposite with tuneable propert...
AbstractElastic modulus of commonly used excipient, i.e. microcrystalline cellulose (MCC) and an act...
Nanoindentation is ideal for the characterization of inhomogeneous biological materials. However, th...
[EN] Fast, high resolution and wide elastic modulus range mapping of heterogeneous interfaces repres...
Atomic force microscopy (AFM) is a versatile tool to perform mechanical characterization of surface...
A novel approach combining the atomic force microscopy probing of nacre biopolymer strand and the in...