Understanding the plastic deformation mechanisms of disordered materials is a longstanding and complex problem in condensed matter physics and materials science. In particular, the elementary plastic rearrangement in a disordered material is believed to be the shear transformation zone, a localized cooperative motion of a handful of constituents. Although observed in mesoscale systems, the shear transformation zone has never been identified in an experiment at the nanoscale. In the present work, atomic force microscopy is used to probe the mechanical response of thin films of disordered nanoparticle packings that have been deposited by spin-coating and layer-by-layer deposition. Results demonstrate that these materials possess strong hetero...
Central to the description of plasticity in disordered solids is the development of constitutive law...
We study the uniaxial compressive behavior of disordered colloidal free-standing micropillars compos...
Many of today\u27s nanotechnologies and processes rely on highly confined ($\u3c30$ nm) polymer glas...
Understanding the plastic deformation mechanisms of disordered materials is a longstanding and compl...
Understanding the plastic deformation mechanisms of disordered materials is a longstanding and compl...
Nanoindentation experiments on disordered nanoparticle packings performed both in an atomic force mi...
Nanoparticle packings have potential uses in new nanoscale devices including in optics, electronics,...
Disordered materials surround us in our daily lives from glasses and plastics to sandcastles and mud...
In this thesis, I will investigate the properties of disordered materials under strain. Disordered ...
Disordered materials surround us in our daily lives from glasses and plastics to sandcastles and mud...
The nonequilibrium nature of kinetically frozen solids such as metallic glasses (MGs) is at once res...
Atomic force microscopy-based nanoindentation is used to image and probe the local mechanical proper...
When deformed beyond their elastic limits, crystalline solids flow plastically via particle rearrang...
Materials consisting of grains or crystallites with sizes below a hundred nanometers have exhibited ...
Shear localisation in thin bands is an important process involved in the plastic deformation of mate...
Central to the description of plasticity in disordered solids is the development of constitutive law...
We study the uniaxial compressive behavior of disordered colloidal free-standing micropillars compos...
Many of today\u27s nanotechnologies and processes rely on highly confined ($\u3c30$ nm) polymer glas...
Understanding the plastic deformation mechanisms of disordered materials is a longstanding and compl...
Understanding the plastic deformation mechanisms of disordered materials is a longstanding and compl...
Nanoindentation experiments on disordered nanoparticle packings performed both in an atomic force mi...
Nanoparticle packings have potential uses in new nanoscale devices including in optics, electronics,...
Disordered materials surround us in our daily lives from glasses and plastics to sandcastles and mud...
In this thesis, I will investigate the properties of disordered materials under strain. Disordered ...
Disordered materials surround us in our daily lives from glasses and plastics to sandcastles and mud...
The nonequilibrium nature of kinetically frozen solids such as metallic glasses (MGs) is at once res...
Atomic force microscopy-based nanoindentation is used to image and probe the local mechanical proper...
When deformed beyond their elastic limits, crystalline solids flow plastically via particle rearrang...
Materials consisting of grains or crystallites with sizes below a hundred nanometers have exhibited ...
Shear localisation in thin bands is an important process involved in the plastic deformation of mate...
Central to the description of plasticity in disordered solids is the development of constitutive law...
We study the uniaxial compressive behavior of disordered colloidal free-standing micropillars compos...
Many of today\u27s nanotechnologies and processes rely on highly confined ($\u3c30$ nm) polymer glas...