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Experimental studies on phase separation in critical microemulsion and micellar systems

✍ Scribed by F. Mallamace; N. Micali; S.H. Chen


Book ID
104341415
Publisher
Elsevier Science
Year
1997
Tongue
English
Weight
830 KB
Volume
235
Category
Article
ISSN
0378-4371

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✦ Synopsis


We have studied the phase separation process in two systems containing surfactant molecules, i.e. a three-component microemulsion system made by a Aerosol OT-water~lecane surfactant and a water-Butoxyethanol (C4EI) micellar-like mixture. The analyses were performed by using the time resolved light scattering intensity technique. All the three stages of the process were studied. The time evolution of intensities for the initial stage follows closely the linearized theory. Time evolution of the characteristic wave vector and the intensity distribution in the intermediate and late stages are in good agreement with scaling models. A comparison of the obtained data in the late stage with the findings of a recent Molecular Dynamic simulation, carried out in mixtures containing surfactant, gives a clear indication that in the investigated systems the phase separation process occurs through the formation of different structural coalesing domains. Whereas in the AOT microemulsion system the separation occurs through the formation of irregular bicontinuous-like domains, in the water-C4E~ mixture the separation is dominated by micellar domains which depend by thermal fluctuations.


πŸ“œ SIMILAR VOLUMES


Aqueous two-phase micellar systems in an
✍ AndrΓ© M. Lopes; Daniel P. Silva; AntΓ³nio A. Vicente; Adalberto Pessoa-Jr; JosΓ© A πŸ“‚ Article πŸ“… 2011 πŸ› Wiley (John Wiley & Sons) 🌐 English βš– 178 KB πŸ‘ 1 views

BACKGROUND: Aqueous two-phase micellar systems (ATPMS) are micellar surfactant solutions with physical properties that make them very efficient for the extraction/concentration of biological products. In this work the main proposal that has been discussed is the possible applicability and importance