The change of the structure of concentrated colloidal suspensions upon addition of non-adsorbing polymer is studied within a two-component, Ornstein-Zernic ke based liquid state approach. The polymers' conformational degrees of freedom are considered and excluded volume is enforced at the segment level. The polymer correlation hole,depletion layer,and excess chemical potentials are described in agreement with polymer physics theory in contrast to models treating the macromolecules as effective spheres. Known depletion attraction effects are recovered for low particle density,while at higher densities novel many-body effects emerge which become dominant for large polymers
We study a model suspension of sterically stabilized colloidal particles and nonadsorbing ideal poly...
Colloidal suspension undergoes phase transition: gas, liquid and crystal states, as was observed in ...
We study a model suspension of sterically stabilized colloidal particles and nonadsorbing ideal poly...
The change of the structure of concentrated colloidal suspensions upon addition of non-adsorbing pol...
The structural and thermodynamic properties of mixtures of colloidal spheres and nonadsorbing polyme...
We discuss structural correlations in mixtures of free polymer and colloidal particles on the basis ...
We studied the structure of a colloid-polymer mixture, in the one-phase region, as a function of pol...
We studied the structure of a colloid-polymer mixture, in the one-phase region, as a function of pol...
A light scattering turbidity method has been employed to measure the dimensionless colloidal osmotic...
We study the phase behaviour of mixtures of colloidal spheres and polymers that have an excluded-vol...
Attractions between colloidal particles are often so strong that non-equilibrium behavior results. H...
We investigate the structure of colloid-polymer mixtures by calculating the structure factors for t...
We investigate depletion interactions between inert hard colloids in the presence of ideal polymers,...
We study the phase behaviour of mixtures of colloidal spheres and polymers\u3cbr/\u3ethat have an ex...
Phase separation can be induced in a colloidal dispersion by adding non-adsorbing polymers. Depletio...
We study a model suspension of sterically stabilized colloidal particles and nonadsorbing ideal poly...
Colloidal suspension undergoes phase transition: gas, liquid and crystal states, as was observed in ...
We study a model suspension of sterically stabilized colloidal particles and nonadsorbing ideal poly...
The change of the structure of concentrated colloidal suspensions upon addition of non-adsorbing pol...
The structural and thermodynamic properties of mixtures of colloidal spheres and nonadsorbing polyme...
We discuss structural correlations in mixtures of free polymer and colloidal particles on the basis ...
We studied the structure of a colloid-polymer mixture, in the one-phase region, as a function of pol...
We studied the structure of a colloid-polymer mixture, in the one-phase region, as a function of pol...
A light scattering turbidity method has been employed to measure the dimensionless colloidal osmotic...
We study the phase behaviour of mixtures of colloidal spheres and polymers that have an excluded-vol...
Attractions between colloidal particles are often so strong that non-equilibrium behavior results. H...
We investigate the structure of colloid-polymer mixtures by calculating the structure factors for t...
We investigate depletion interactions between inert hard colloids in the presence of ideal polymers,...
We study the phase behaviour of mixtures of colloidal spheres and polymers\u3cbr/\u3ethat have an ex...
Phase separation can be induced in a colloidal dispersion by adding non-adsorbing polymers. Depletio...
We study a model suspension of sterically stabilized colloidal particles and nonadsorbing ideal poly...
Colloidal suspension undergoes phase transition: gas, liquid and crystal states, as was observed in ...
We study a model suspension of sterically stabilized colloidal particles and nonadsorbing ideal poly...