Direct measurements of a depletion interaction between silica surfaces immersed in binary mixtures of non-adsorbing sodium poly(styrene sulfonate) have been made with an atomic force microscope. Variations in the secondary minimum depletion interaction as a function of binary mixture composition were recorded for a number of polymer molecular weights. The position and depth of the minimum in the force data was seen to depend on both the binary mixture composition and the choice of polymer molecular weights used in the mixture. For binary mixtures containing a low molecular weight polymer at a concentration near to or below the chain overlap concentration (C*) the position and depth of the minimum was seen to depend strongly on the propertie...
We report results of light scattering study of interactions in a mixture of a surfactant-stabilized ...
An atomic force microscope has been used to investigate the interaction forces between a mica surfac...
We consider the depletion interaction between mesoscopic particles and non-adsorbing free polymer ch...
We investigated the depletion interaction between stearylated silica surfaces in cyclohexane in the ...
Interaction forces between silica particles were measured in aqueous solutions of the sodium salt of...
We have investigated the structural and depletion forces between silica glass surfaces in aqueous, s...
Direct force measurements between negatively charged silica particles in the presence of a like-char...
This is the first report of experimental observations of depletion interactions in solutions of a (h...
In this paper, the investigation of surface forces in semidilute solutions of a nonadsorbing hydroge...
The depletion interaction between two spheres due to nonadsorbing ideal polymers is calculated from...
An atomic force microscope was used to study the effects of polymer charge density on surface intera...
In this last chapter I will review and integrate the findings of the previous chapters and give sugg...
Phase separation can be induced in a colloidal dispersion by adding non-adsorbing polymers. Depletio...
In colloidal suspensions containing a binary mixture of hard spheres depletion forces occur which su...
An atomic force microscope was used to measure the interaction forces between a polymer-covered sili...
We report results of light scattering study of interactions in a mixture of a surfactant-stabilized ...
An atomic force microscope has been used to investigate the interaction forces between a mica surfac...
We consider the depletion interaction between mesoscopic particles and non-adsorbing free polymer ch...
We investigated the depletion interaction between stearylated silica surfaces in cyclohexane in the ...
Interaction forces between silica particles were measured in aqueous solutions of the sodium salt of...
We have investigated the structural and depletion forces between silica glass surfaces in aqueous, s...
Direct force measurements between negatively charged silica particles in the presence of a like-char...
This is the first report of experimental observations of depletion interactions in solutions of a (h...
In this paper, the investigation of surface forces in semidilute solutions of a nonadsorbing hydroge...
The depletion interaction between two spheres due to nonadsorbing ideal polymers is calculated from...
An atomic force microscope was used to study the effects of polymer charge density on surface intera...
In this last chapter I will review and integrate the findings of the previous chapters and give sugg...
Phase separation can be induced in a colloidal dispersion by adding non-adsorbing polymers. Depletio...
In colloidal suspensions containing a binary mixture of hard spheres depletion forces occur which su...
An atomic force microscope was used to measure the interaction forces between a polymer-covered sili...
We report results of light scattering study of interactions in a mixture of a surfactant-stabilized ...
An atomic force microscope has been used to investigate the interaction forces between a mica surfac...
We consider the depletion interaction between mesoscopic particles and non-adsorbing free polymer ch...