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Association colloids micellar properties

Pseudophase models work for several reasons (i) Reactions in association coUoids can be carried out under conditions of dynamic equilibrium. Thus the totality of the interfacial regions of all the aggregates in micelle, microemulsion, or vesicle solutions, and the totalities of their oil and water regions can be modeled as single interfacial, oil, and water reaction volumes of uniform properties with a separate rate constant for the reaction in each volume. Scheme 4. (ii) The requirement of dynamic equilibrium is met because the rate constants for diffusion of ions and molecules in association colloid solutions are near the diffusion-controlled limit. For example, the entrance and exit rate constants in micellar solutions in Table 1 are orders of magnitude faster than the example rate constants for thermal bimolecular reactions in micellar solutions in Table 4. Many additional examples are compiled in reviews. (iii) Measured rate constants for spontaneous reactions and... [Pg.187]

The interfacial tension can undergo significant changes if the polarity of the medium is altered, such as in the stability/coagulation transition caused by the addition of water to hydrophobic silica dispersions in propanol or ethanol [44,52,53]. Also, the addition of small additives of various surface-active substances can have a dramatic effect on the structure and properties of disperse systems and the conditions of transitions [14,16,17,26]. The formation and structure of stable micellar systems and various surfactant association colloids, such as microemulsion systems and liquid crystalline phases formed in various multicomponent water/hydrocarbon/surfactant/alcohol systems with varying compositions and temperatures, have been described in numerous publications [14-22,78,79,84-88]. These studies provide a detailed analysis of the phase equilibria under various conditions and cover all kinds of systems with all levels of disperse phase concentration. Special attention is devoted to the role of low and ultralow values of the surface energy at the interfaces. The author s first observations of areas of stable microheterogeneity in two-, three-, and four-component systems were documented in [66-68],... [Pg.156]

One of the models best able to describe the properties of micellar colloid solutions is the closed-association model. In it, we start by assuming the colloid comprises n molecules of monomer. We approximate by saying the colloid forms during a single step ... [Pg.515]

Thus micellization in a selective solvent of one of the blocks is a typical aspect of their colloidal properties. In fact when a block or graft copolymer is dissolved in a liquid that is a thermodynamical good solvent for one block and a precipitant for the other, the copolymer chains may associate reversibly to form micellar aggregates which resemble in most of their aspects to those obtained with classical low molecular weight surfactants. The... [Pg.176]


See other pages where Association colloids micellar properties is mentioned: [Pg.15]    [Pg.177]    [Pg.192]    [Pg.177]    [Pg.147]    [Pg.153]    [Pg.151]    [Pg.281]    [Pg.183]    [Pg.124]    [Pg.82]    [Pg.238]    [Pg.273]    [Pg.473]    [Pg.120]    [Pg.17]    [Pg.28]    [Pg.58]    [Pg.161]    [Pg.139]    [Pg.2]   
See also in sourсe #XX -- [ Pg.72 ]




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Association colloids

Associative property

Colloid, associated

Colloidal properties

Micellar association

Micellar colloids

Micellar properties

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