Surfactant-surfactant interactions in mixed monolayer and mixed micelle formation

Authors
Citation
Mj. Rosen et Q. Zhou, Surfactant-surfactant interactions in mixed monolayer and mixed micelle formation, LANGMUIR, 17(12), 2001, pp. 3532-3537
Citations number
9
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
LANGMUIR
ISSN journal
07437463 → ACNP
Volume
17
Issue
12
Year of publication
2001
Pages
3532 - 3537
Database
ISI
SICI code
0743-7463(20010612)17:12<3532:SIIMMA>2.0.ZU;2-Q
Abstract
The relationship between the interaction between the same two surfactants i n a mixed monolayer at the air/aqueous solution interface (beta (sigma)) an d their interaction in a mixed micelle in the aqueous phase (beta (M)) was investigated, in 0.1 M NaCl at 25 degreesC. All the interactions investigat ed were attractive (having negative B values) and had relatively stronger i nteraction in the mixed monolayer than in the mixed micelle, except for mix tures of anionic surfactants and some polyoxyethylenated (POE) nonionic sur factants, where relatively stronger: interaction occurs in the mixed micell e. It is shown that the relative strengths-of the interactions at the inter face and in the micelle in the anionic-POE nonionic mixtures are determined by the branching and bulkiness of the hydrophobic and hydrophilic groups o f the surfactants in the mixture. Interaction in the mixed micelle is reduc ed by branching in the hydrophobic group in either surfactant of the: mixtu re. Branching close to the hydrophilic group of the anionic surfactant in t he mixture reduces the interactions both in the mixed micelle (beta (M)) an d in the mixed monolayer (beta (sigma)), with the effect on the interaction in the mixed micelle (beta (M)) greater than that in the mixed monolayer ( beta (sigma)) When both the anionic and the nonionic surfactants have branc hed hydrophobic groups and the anionic surfactant, in addition, has branchi ng near the hydrophilic group, interactions in both the mixed,monolayer and the mixed micelle are weak. Interaction in the anionic-POE nonionic mixed micelle is sharply enhanced by an increase of the oxyethylene units in the POE group of the nonionic surfactant of the mixture to a number sufficient to complex the Na+ of the anionic surfactant. Consequently, for synergy in surface tension reduction effectiveness to exist in anionic-POE nonionics, the number of oxyethylene units in the nonionic must be small.