Soft spheres interacting via a hard core and a range of attractive and repulsive ‘soft-shoulder’ potentials self-assemble into clusters forming a variety of mesophases. We combine a mean-field theory developed from a lattice model with a level surface analysis of the periodic structures of soft-sphere aggregates to study stable morphologies for all clustering potentials. We develop a systematic approach to the thermodynamics of mesophase assembly in the low-temperature, strong-segregation and predict a generic sequence of phases including lamella, hexagonal-columnar and body-center cubic phases, as well as the associated inverse structures. We discuss the finite temperature corrections to strong segregation theory in terms of Sommerfeld-lik...
The interplay between crystalline ordering, curvature, and size dispersity make the packing of bidis...
Colloidal fluids interacting via effective potentials which are attractive at the short range and re...
The interplay between crystalline ordering, curvature, and size dispersity make the packing of bidis...
Soft spheres interacting via a hard core and a range of attractive and repulsive ‘soft-shoulder’ pot...
We use both mean-field methods and numerical simulation to study the phase diagram of classical part...
Colloidal fluids interacting via effective potentials which are attractive at the short range and re...
Soft particles are known to overlap and form stable clusters that self-assemble into periodic crysta...
We investigate the formation of cluster crystals with multiply occupied lattice sites on a spherical...
Systems composed of spherical charged particles in solvents containing counterions and inducing effe...
We present results from particle simulations with isotropic medium range interactions in two dimensi...
Particle systems interacting with a soft repulsion, at thermal equilibrium and under some circumstan...
The formation of mesophases in fluids with hard-core plus tail interactions is investigated and comp...
We conduct Metropolis Monte Carlo simulations on models of dilute colloidal dispersions, where the p...
We conduct Metropolis Monte Carlo simulations on models of dilute colloidal dispersions, where the p...
Colloidal fluids interacting via effective potentials which are attractive at the short range and re...
The interplay between crystalline ordering, curvature, and size dispersity make the packing of bidis...
Colloidal fluids interacting via effective potentials which are attractive at the short range and re...
The interplay between crystalline ordering, curvature, and size dispersity make the packing of bidis...
Soft spheres interacting via a hard core and a range of attractive and repulsive ‘soft-shoulder’ pot...
We use both mean-field methods and numerical simulation to study the phase diagram of classical part...
Colloidal fluids interacting via effective potentials which are attractive at the short range and re...
Soft particles are known to overlap and form stable clusters that self-assemble into periodic crysta...
We investigate the formation of cluster crystals with multiply occupied lattice sites on a spherical...
Systems composed of spherical charged particles in solvents containing counterions and inducing effe...
We present results from particle simulations with isotropic medium range interactions in two dimensi...
Particle systems interacting with a soft repulsion, at thermal equilibrium and under some circumstan...
The formation of mesophases in fluids with hard-core plus tail interactions is investigated and comp...
We conduct Metropolis Monte Carlo simulations on models of dilute colloidal dispersions, where the p...
We conduct Metropolis Monte Carlo simulations on models of dilute colloidal dispersions, where the p...
Colloidal fluids interacting via effective potentials which are attractive at the short range and re...
The interplay between crystalline ordering, curvature, and size dispersity make the packing of bidis...
Colloidal fluids interacting via effective potentials which are attractive at the short range and re...
The interplay between crystalline ordering, curvature, and size dispersity make the packing of bidis...