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Saturated Micellar Networks: Phase Separation and Nanoemulsification Capacity.

Authors :
Slavova, Tatiana G.
Radulova, Gergana M.
Danov, Krassimir D.
Source :
Colloids & Interfaces; Feb2024, Vol. 8 Issue 1, p11, 18p
Publication Year :
2024

Abstract

Different oils can be homogeneously dispersed in the network junctions of the separated bicontinuous micellar phases. Upon dilution, these dispersions spontaneously form nanoemulsions. The possibility of a micellar sponge phase formation in the case of mixtures with three anionic and two zwitterionic surfactants in the presence of divalent and monovalent salts is studied. The best results are obtained using sodium lauryl ether sulfate with 1 ethylene oxide group (SLES-1EO) and both cocamidopropyl betaine (CAPB) or N,N-dimethyldodecylamine N-oxide (DDAO) in the presence of an appropriate small amount of MgCl<subscript>2</subscript> and CaCl<subscript>2</subscript>. Bicontinuous micellar phases can be produced also in high-salinity NaCl solutions. The bulk properties of these phases are independent of the concentration of the initial solutions from which they are separated, and their Newtonian viscosities are in the range from 0.3 Pa·s to 0.8 Pa·s. Both 8 wt% CAPB- and DDAO-containing sponge phases engulf up to 10 wt% limonene and spontaneously form nanoemulsion upon dilution with droplet sizes of 110–120 nm. Vitamin E can be homogeneously dispersed only in CAPB-containing saturated micellar network, and upon dilution, these dispersions spontaneously form nanoemulsions with smaller droplet sizes of 66 nm for both 8 diastereomers and 2 diastereomers mixtures of vitamin E. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
25045377
Volume :
8
Issue :
1
Database :
Complementary Index
Journal :
Colloids & Interfaces
Publication Type :
Academic Journal
Accession number :
175648114
Full Text :
https://doi.org/10.3390/colloids8010011