The plastic flow of crystals takes place via the elementary flow of topological defects and is strongly influenced by the presence of grain boundaries. Here, the authors show how the atomic structure of grain boundaries affects the dynamics of interstitial defects driven across monolayer colloidal polycrystals
Colloids are microscopic particles whose size ranges from a nanometer to several micrometers, that a...
Using simulations we explore the behaviour of two-dimensional colloidal (poly)crystals doped with ac...
We study grain-boundary fluctuations in two-dimensional colloidal crystals in real space and time us...
Crystalline solids typically contain large amounts of defects such as dislocations and interstitials...
The dynamics of grain boundaries in two-dimensional colloidal crystals is studied using optical micr...
We investigate the segregation of impurities to grain boundaries in colloidal polycrystalline monola...
Grain boundary dynamics and grain growth play a pivotal role in the fabrication of functional polycr...
International audienceA coarse-grained extension of a recent nanoscale elasto-plastic model of polar...
Microstructure of polycrystalline materials can be described as grain boundary (GB) networks; hence,...
Microstructure of polycrystalline materials can be described as grain boundary (GB) networks; hence,...
In polycrystals, faceted grains may become round and rough at high temperatures. Such a roughening p...
The structural and dynamic behaviour of two-dimensional binary colloidal polycrystals and fluids are...
A polycrystalline material is an aggregate of crystallites with different lattice orientations. The ...
The mechanical response of polycrystalline metals is significantly affected by the behaviour of grai...
Colloids are microscopic particles whose size ranges from a nanometer to several micrometers, that a...
Using simulations we explore the behaviour of two-dimensional colloidal (poly)crystals doped with ac...
We study grain-boundary fluctuations in two-dimensional colloidal crystals in real space and time us...
Crystalline solids typically contain large amounts of defects such as dislocations and interstitials...
The dynamics of grain boundaries in two-dimensional colloidal crystals is studied using optical micr...
We investigate the segregation of impurities to grain boundaries in colloidal polycrystalline monola...
Grain boundary dynamics and grain growth play a pivotal role in the fabrication of functional polycr...
International audienceA coarse-grained extension of a recent nanoscale elasto-plastic model of polar...
Microstructure of polycrystalline materials can be described as grain boundary (GB) networks; hence,...
Microstructure of polycrystalline materials can be described as grain boundary (GB) networks; hence,...
In polycrystals, faceted grains may become round and rough at high temperatures. Such a roughening p...
The structural and dynamic behaviour of two-dimensional binary colloidal polycrystals and fluids are...
A polycrystalline material is an aggregate of crystallites with different lattice orientations. The ...
The mechanical response of polycrystalline metals is significantly affected by the behaviour of grai...
Colloids are microscopic particles whose size ranges from a nanometer to several micrometers, that a...
Using simulations we explore the behaviour of two-dimensional colloidal (poly)crystals doped with ac...
We study grain-boundary fluctuations in two-dimensional colloidal crystals in real space and time us...