Micellar growth and network formation in acidic solutions of a sulfobetaine zwitterionic surfactant triggered by an inorganic salt
Micellization (formation of wormlike structures) of 3-( N -erucamidopropyl- N , N -dimethyl ammonium)propane sulfonate (EDAS) in the presence of an inorganic salt, iron chloride (FeCl 3 ), in acidic conditions is studied using static and dynamic rheological measurements and small-angle X-ray scatter...
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Veröffentlicht in: | Soft matter 2020-05, Vol.16 (18), p.4494-451 |
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Hauptverfasser: | , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Micellization (formation of wormlike structures) of 3-(
N
-erucamidopropyl-
N
,
N
-dimethyl ammonium)propane sulfonate (EDAS) in the presence of an inorganic salt, iron chloride (FeCl
3
), in acidic conditions is studied using static and dynamic rheological measurements and small-angle X-ray scattering (SAXS). Infrared spectroscopy, single crystal X-ray, and UV-visible spectroscopy are used to further investigate the mechanisms of viscosity and elasticity and the enhancement and formation of an elastic gel-like solution induced by Fe
3+
in HCl. The nature of the interaction is characterized to be hydrogen bonding between the amide groups of EDAS and coordinated water in
trans
-[FeCl
2
(H
2
O)
4
]Cl structure. Such an interaction masks the repulsion forces between surfactant headgroups. This screening effect results in the formation of longer wormlike micelles in the solution. The chemical structure of FeCl
3
in concentrated HCl was predicted in the literature through theoretical and experimental techniques; however, its crystal structure, including the exact geometry (
e.g.
,
cis
or
trans
) and the non-coordinated chloride position is reported for the first time in the present study. The findings of this study show the sensitivity of a sulfobetaine zwitterionic surfactant to pH alteration and inorganic salt.
Micellization (formation of wormlike structures) of 3-(
N
-erucamidopropyl-
N
,
N
-dimethyl ammonium)propane sulfonate (EDAS) in the presence of an inorganic salt, iron chloride (FeCl
3
), in acidic conditions is studied using static and dynamic rheological measurements and small-angle X-ray scattering (SAXS). |
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ISSN: | 1744-683X 1744-6848 |
DOI: | 10.1039/d0sm00399a |