We present a general strategy for generating full atomistic models of nanopolycrystalline materials including bulk and thin film. In particular, models for oxide nanoparticles were constructed using simulated amorphisation and crystallisation and used to populate a library of oxide nanoparticles (amorphous and crystalline) with different radii. Nanoparticles were then taken from this library and positioned, within a specific volume, using Monte Carlo techniques, to facilitate a tight-packed structure. The grain-size distribution of the polycrystalline material was controlled by selecting particular sized nanoparticles from the library. The (randomly oriented) grains facilitated a polycrystalline oxide, which comprised a network of general g...
Atomistic simulations show that high-energy grain boundaries in nanocrystalline copper and nanocryst...
Nanomaterials synthesized from nanobuilding blocks promise size-dependent properties, associated wit...
When supported, thin films demonstrate remarkable structural transformations, with important implic...
We present a general strategy for generating full atomistic models of nanopolycrystalline materials...
In the past decades, nanostructured materials have opened new and fascinating avenues for research. ...
Nanocrystalline materials have applications in numerous fields due to their high strength. Grain gro...
A simulated amorphization and recrystallization strategy has been used to generate atomistic models ...
International audienceNew advanced nanoscale-controlled materials could offer unique functionalities...
A full diffusion kinetic Monte Carlo algorithm is used to model nanocrystalline film deposition, and...
Computational modeling has become a widespread tool for the understanding and prediction of physicoc...
Abstract. Data from atomistic simulations of nanostructured materials pose challenges to conventiona...
A kinetic Monte Carlo approach on a coarse-grained lattice is developed for the simulation of surfac...
Due to their extraordinary mechanical properties, the field of research on nanocrystalline metals an...
We present the first simulation of an ultra-thin supported oxide, which encompasses, within a single...
Nanoporous solids are ubiquitous in chemical, energy, and environmental processes, where controlled ...
Atomistic simulations show that high-energy grain boundaries in nanocrystalline copper and nanocryst...
Nanomaterials synthesized from nanobuilding blocks promise size-dependent properties, associated wit...
When supported, thin films demonstrate remarkable structural transformations, with important implic...
We present a general strategy for generating full atomistic models of nanopolycrystalline materials...
In the past decades, nanostructured materials have opened new and fascinating avenues for research. ...
Nanocrystalline materials have applications in numerous fields due to their high strength. Grain gro...
A simulated amorphization and recrystallization strategy has been used to generate atomistic models ...
International audienceNew advanced nanoscale-controlled materials could offer unique functionalities...
A full diffusion kinetic Monte Carlo algorithm is used to model nanocrystalline film deposition, and...
Computational modeling has become a widespread tool for the understanding and prediction of physicoc...
Abstract. Data from atomistic simulations of nanostructured materials pose challenges to conventiona...
A kinetic Monte Carlo approach on a coarse-grained lattice is developed for the simulation of surfac...
Due to their extraordinary mechanical properties, the field of research on nanocrystalline metals an...
We present the first simulation of an ultra-thin supported oxide, which encompasses, within a single...
Nanoporous solids are ubiquitous in chemical, energy, and environmental processes, where controlled ...
Atomistic simulations show that high-energy grain boundaries in nanocrystalline copper and nanocryst...
Nanomaterials synthesized from nanobuilding blocks promise size-dependent properties, associated wit...
When supported, thin films demonstrate remarkable structural transformations, with important implic...