Entropy driven phase transitions in colloid–polymer suspensions: Tests of depletion theories
نویسندگان
چکیده
The phase behavior of model athermal silica ~radius R550 nm!–polystyrene–toluene suspensions has been determined over nearly two orders of magnitude in polymer or colloid size asymmetry. Fluid–gel, fluid–crystal, and fluid–fluid transitions are observed as Rg , the polymer radius of gyration, increases. Based on the polymer concentration relative to the dilute–semidilute crossover density, cp /cp * , as the relevant measure of depletion attraction, we find that suspension miscibility monotonically improves as Rg increases for all colloid volume fractions. This trend is in contradiction to all classic depletion theories of which we are aware. However, the predictions of fluid–fluid spinodal phase separation by the microscopic polymer reference interaction site model integral equation theory of athermal polymer–colloid suspensions are in agreement with the experimental observations. Polymer–polymer interactions, chain fractal structure, and structural reorganizations are implicated as critical physical factors. A fluid–gel transition is observed in the one-phase region for Rg50.026R . The recently proposed dynamic mode-coupling theory is found to provide a nearly quantitative prediction of the gel line. With increasing Rg /R , gelation is predicted to require larger values of cp /cp * such that the nonergodicity transition shifts into the metastable region of the phase diagram in agreement with experiment. Comparison of the gelation behavior predicted based on the assumption that it is coincident with the static percolation line is also examined, with mixed results. © 2002 American Institute of Physics. @DOI: 10.1063/1.1426413#
منابع مشابه
Concentration Fluctuations in a Model Colloid-Polymer Suspension : experimental Tests of Depletion Theories
A light scattering turbidity method has been employed to measure the dimensionless colloidal osmotic compressibility of carefully characterized model athermal colloid (silica)-polymer (polystyrene) suspensions. Mixture thermodynamics is controlled by purely repulsive, hard sphere interactions between the particles while the polymer is in a good solvent. Polymer size is varied by nearly 2 orders...
متن کاملDepletion-induced phase separation in colloid-polymer mixtures.
Phase separation can be induced in a colloidal dispersion by adding non-adsorbing polymers. Depletion of polymer around the colloidal particles induces an effective attraction, leading to demixing at sufficient polymer concentration. This communication reviews theoretical and experimental work carried out on the polymer-mediated attraction between spherical colloids and the resulting phase sepa...
متن کاملConfinement-induced solidification of colloid-polymer depletion mixtures.
Using a model colloid-polymer suspension, we show that confinement induces solidification in attractive colloidal suspensions via a fundamentally different route from that active in hard sphere colloidal suspensions. For a range of polymer concentrations, the suspensions undergo a phase transition from a colloidal fluid of clusters to a colloidal gel as confinement increases while polymer and p...
متن کاملThe structure of colloid-polymer mixtures
– We investigate the structure of colloid-polymer mixtures by calculating the structure factors for the Asakura-Oosawa model in the PY approximation. We discuss the role of potential range, polymer concentration and polymer-polymer interactions on the colloid-colloid structure. Our results compare reasonably well with the recent experiments of Moussäıd et al. (Moussäid A., Poon W. C. K., Pusey ...
متن کاملStructure and thermodynamics of colloid-polymer mixtures : A macromolecular approach
– The change of the structure of concentrated colloidal suspensions upon addition of non-adsorbing polymer is studied within a two-component, Ornstein-Zernicke–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...
متن کامل