Targeting specific technological applications requires the control of nanoparticle properties, especially the crystalline polymorph. Freezing a nanodroplet deposited on a solid substrate leads to the formation of crystalline structures. We study the inherent mechanisms underlying this general phenomenon by means of molecular dynamics simulations. Our work shows that different crystal structures can be selected by finely tuning the solid substrate lattice parameter. Indeed, while for our system, face-centered cubic is usually the most preponderant structure, the growth of two distinct polymorphs, hexagonal centered packing and body-centered cubic, was also observed even when the solid substrate was face-centered cubic. Finally, we also demon...
We apply a simple dynamical density functional theory, the phase-field crystal (PFC) model of overda...
We use a simple density functional approach on a diffusional time scale, to address freezing to the ...
In crystallization, nanoparticle aggregation often leads to the formation of orderly structures, eve...
Targeting specific technological applications requires the control of nanoparticles properties and e...
We investigate the crystallization of monodisperse hard spheres confined by two square patterned sub...
We investigate the crystallization of monodisperse hard spheres confined by two square patterned sub...
We report molecular dynamics simulations of thermal spray coating of Cu nanodroplets on Cu substrate...
Colloidal nanoparticle assembly methods can serve as ideal models to explore the fundamentals of hom...
Molecular dynamics simulations are used to explore the atomic mechanism of formation of polymorphic ...
Seeded crystallization and solidification in nanoscale confinement volumes have become an important ...
More than 100 years after Ostwald postulated his step rule of stages, predictive understanding as to...
International audienceHeterogeneous crystal nucleation is ubiquitous in nature and at the heart of m...
International audienceHeterogeneous crystal nucleation is ubiquitous in nature and at the heart of m...
International audienceHeterogeneous crystal nucleation is ubiquitous in nature and at the heart of m...
International audienceHeterogeneous crystal nucleation is ubiquitous in nature and at the heart of m...
We apply a simple dynamical density functional theory, the phase-field crystal (PFC) model of overda...
We use a simple density functional approach on a diffusional time scale, to address freezing to the ...
In crystallization, nanoparticle aggregation often leads to the formation of orderly structures, eve...
Targeting specific technological applications requires the control of nanoparticles properties and e...
We investigate the crystallization of monodisperse hard spheres confined by two square patterned sub...
We investigate the crystallization of monodisperse hard spheres confined by two square patterned sub...
We report molecular dynamics simulations of thermal spray coating of Cu nanodroplets on Cu substrate...
Colloidal nanoparticle assembly methods can serve as ideal models to explore the fundamentals of hom...
Molecular dynamics simulations are used to explore the atomic mechanism of formation of polymorphic ...
Seeded crystallization and solidification in nanoscale confinement volumes have become an important ...
More than 100 years after Ostwald postulated his step rule of stages, predictive understanding as to...
International audienceHeterogeneous crystal nucleation is ubiquitous in nature and at the heart of m...
International audienceHeterogeneous crystal nucleation is ubiquitous in nature and at the heart of m...
International audienceHeterogeneous crystal nucleation is ubiquitous in nature and at the heart of m...
International audienceHeterogeneous crystal nucleation is ubiquitous in nature and at the heart of m...
We apply a simple dynamical density functional theory, the phase-field crystal (PFC) model of overda...
We use a simple density functional approach on a diffusional time scale, to address freezing to the ...
In crystallization, nanoparticle aggregation often leads to the formation of orderly structures, eve...