The interaction between two spheres in a solution of nonadsorbing polymers, with excluded volume interaction, is calculated from the depletion layers around the spheres using the generalized Gibbs adsorption equation. By combining the bulk correlation length with the curvature-dependent interfacial tension between a sphere and the surrounding polymer solution [Hanke, Eisenriegler, and Dietrich, Phys. Rev. E 59, 6853 (1999)], the depletion layer thickness around a sphere is obtained. The resulting contact potential agrees with a scaling prediction of de Gennes in the semidilute regime
We consider the depletion interaction between mesoscopic particles and non-adsorbing free polymer ch...
We use a numerical implementation of polymer self-consistent field theory to study the effective int...
We derive a general equation for the depletion thickness delta next to a flat wall in a solution of ...
The interaction between two spheres in a solution of nonadsorbing polymers, with excluded volume int...
A recently developed method is applied to calculate the depletion interaction between a sphere and ...
A recently developed method is applied to calculate the depletion interaction between a sphere and a...
The depletion interaction between two spheres due to nonadsorbing ideal polymers is calculated from ...
The interaction between two parallel plates due to non-adsorbing polymer chains with excluded volum...
The interaction between two parallel plates due to non-adsorbing polymer chains with excluded volum...
Analytical expressions are derived for the polymer excess amount and the grand potential (surface fr...
We use a continuum chain model and develop an analytical theory for the interaction between two sphe...
The effect of polymer polydispersity on the polymer-induced interaction between colloidal particles ...
Analytical expressions are derived for the polymer excess amount and the grand potential (surface fr...
We analyze a system consisting of two spherical particles immersed in a polydispersed polymer soluti...
The behaviour of a solution of equilibrium polymers (or living polymers) between two surfaces is stu...
We consider the depletion interaction between mesoscopic particles and non-adsorbing free polymer ch...
We use a numerical implementation of polymer self-consistent field theory to study the effective int...
We derive a general equation for the depletion thickness delta next to a flat wall in a solution of ...
The interaction between two spheres in a solution of nonadsorbing polymers, with excluded volume int...
A recently developed method is applied to calculate the depletion interaction between a sphere and ...
A recently developed method is applied to calculate the depletion interaction between a sphere and a...
The depletion interaction between two spheres due to nonadsorbing ideal polymers is calculated from ...
The interaction between two parallel plates due to non-adsorbing polymer chains with excluded volum...
The interaction between two parallel plates due to non-adsorbing polymer chains with excluded volum...
Analytical expressions are derived for the polymer excess amount and the grand potential (surface fr...
We use a continuum chain model and develop an analytical theory for the interaction between two sphe...
The effect of polymer polydispersity on the polymer-induced interaction between colloidal particles ...
Analytical expressions are derived for the polymer excess amount and the grand potential (surface fr...
We analyze a system consisting of two spherical particles immersed in a polydispersed polymer soluti...
The behaviour of a solution of equilibrium polymers (or living polymers) between two surfaces is stu...
We consider the depletion interaction between mesoscopic particles and non-adsorbing free polymer ch...
We use a numerical implementation of polymer self-consistent field theory to study the effective int...
We derive a general equation for the depletion thickness delta next to a flat wall in a solution of ...