Tenside Surfactants Detergents · 2007 · 20 citations · 19 references
Chemical EngineeringPattern FormationSub-micellar AggregatesEngineeringMicellar LifetimeStable MicellesPolymer ScienceAbstract MicellesMolecular BiologyMicelleAmphiphilic SystemChemistrySoft MatterMedicineChemical KineticsBiophysicsSurfactant Solution
Abstract Micelles are known to be dynamic entities, rapidly breaking and reforming continuously. Micellar dynamics can be manipulated by the addition of non-ionic or oppositely charged cosurfactant to a sodium dodecyl sulfate solution. Using filtration through nanoporous membranes we have shown that sodium dodecyl sulfate micellar solutions are not only made up of micelles and monomers, but also contain a high concentration of sub-micellar aggregates. The concentration of sub-micellar aggregates decreases as the micellar stability increases. We have investigated the role of micellar stability and sub-micellar aggregates in cleaning of fabrics and hard surfaces such as porcelain dishes. After careful observation, it was determined that more stable micelles and lower concentrations of sub-micellar aggregates lead to more efficient detergency. In summary, it is desirable to have relatively stable micelles and the least number of sub-micellar aggregates for efficient detergency.
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Ari Helenius, Darrell R. McCaslin, Erik Fries et al. · Methods in enzymology on CD-ROM/Methods in enzymology · 1979 · 676 citations
Chemical relaxation studies of micellar equilibriums
Jochen Lang, C. Tondre, R. Zana et al. · The Journal of Physical Chemistry · 1975 · 141 citations