Hypothesis: Many efforts have been made to formulate water-IL
microemulsions. One of the most intensely studied systems is H2O -
1-butyl-3-methylimidazolium hexafluorophosphate ([BMIm]PF6) -
4-octylphenol polyethoxylate (TX-100) and it is not questioned that this
system forms microemulsions. The nanostructures observed for traditional
microemulsions are postulated with the surfactant being adsorbed at the
interface such that the hydrophilic EO sides intrude into the water
domains, while the hydrophobic hydrocarbon chains are immersed into
[BMIm]PF6. However, the high polarity of [BMIm] PF6 and the
observation that [BMIm]PF6 mixes well with oligoethylene oxides but
hardly with non polar solvents like toluene or alkanes are not in line
with this picture.
Experiments: We re-studied the ternary system H2O - [BMIm]PF6 - TX-100
by measuring phase diagrams, determining tie-lines, and carrying out
ROESY NMR and PFG NMR measurements.
Findings: We found that the hydrophobic part of the surfactant interacts
neither with water nor with [BMIm]PF6, while both solvents interact
with the hydrophilic part of the surfactant. We suggest that the
surfactant is not adsorbed at the interface between water and the IL,
but forms normal spherical or elongated micelles or even continuous
aggregates with the hydrocarbon chains forming the interior of the
aggregates. (C) 2016 Elsevier Inc. All rights reserved.
%0 Journal Article
%1 ISI:000385690200027
%A Bilgili, Harun
%A Buerger, Matthias
%A Stubenrauch, Cosima
%A Porada, Jan H.
%C 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
%D 2016
%I ACADEMIC PRESS INC ELSEVIER SCIENCE
%J JOURNAL OF COLLOID AND INTERFACE SCIENCE
%K - Hydrophobic IL Microemulsifying TX-100; in ionic liquids} of water water; {Nanostructure {[}BMIm]PF6
%P 237-248
%R 10.1016/j.jcis.2016.08.083
%T About the nanostructure of the ternary system water - [BMIm]PF6 -
TX-100
%V 484
%X Hypothesis: Many efforts have been made to formulate water-IL
microemulsions. One of the most intensely studied systems is H2O -
1-butyl-3-methylimidazolium hexafluorophosphate ([BMIm]PF6) -
4-octylphenol polyethoxylate (TX-100) and it is not questioned that this
system forms microemulsions. The nanostructures observed for traditional
microemulsions are postulated with the surfactant being adsorbed at the
interface such that the hydrophilic EO sides intrude into the water
domains, while the hydrophobic hydrocarbon chains are immersed into
[BMIm]PF6. However, the high polarity of [BMIm] PF6 and the
observation that [BMIm]PF6 mixes well with oligoethylene oxides but
hardly with non polar solvents like toluene or alkanes are not in line
with this picture.
Experiments: We re-studied the ternary system H2O - [BMIm]PF6 - TX-100
by measuring phase diagrams, determining tie-lines, and carrying out
ROESY NMR and PFG NMR measurements.
Findings: We found that the hydrophobic part of the surfactant interacts
neither with water nor with [BMIm]PF6, while both solvents interact
with the hydrophilic part of the surfactant. We suggest that the
surfactant is not adsorbed at the interface between water and the IL,
but forms normal spherical or elongated micelles or even continuous
aggregates with the hydrocarbon chains forming the interior of the
aggregates. (C) 2016 Elsevier Inc. All rights reserved.
@article{ISI:000385690200027,
abstract = {{Hypothesis: Many efforts have been made to formulate water-IL
microemulsions. One of the most intensely studied systems is H2O -
1-butyl-3-methylimidazolium hexafluorophosphate ({[}BMIm]PF6) -
4-octylphenol polyethoxylate (TX-100) and it is not questioned that this
system forms microemulsions. The nanostructures observed for traditional
microemulsions are postulated with the surfactant being adsorbed at the
interface such that the hydrophilic EO sides intrude into the water
domains, while the hydrophobic hydrocarbon chains are immersed into
{[}BMIm]PF6. However, the high polarity of {[}BMIm] PF6 and the
observation that {[}BMIm]PF6 mixes well with oligoethylene oxides but
hardly with non polar solvents like toluene or alkanes are not in line
with this picture.
Experiments: We re-studied the ternary system H2O - {[}BMIm]PF6 - TX-100
by measuring phase diagrams, determining tie-lines, and carrying out
ROESY NMR and PFG NMR measurements.
Findings: We found that the hydrophobic part of the surfactant interacts
neither with water nor with {[}BMIm]PF6, while both solvents interact
with the hydrophilic part of the surfactant. We suggest that the
surfactant is not adsorbed at the interface between water and the IL,
but forms normal spherical or elongated micelles or even continuous
aggregates with the hydrocarbon chains forming the interior of the
aggregates. (C) 2016 Elsevier Inc. All rights reserved.}},
added-at = {2017-05-18T11:32:12.000+0200},
address = {{525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA}},
affiliation = {{Stubenrauch, C (Reprint Author), Univ Stuttgart, Inst Phys Chem, Pfaffenwaldring 55, D-70569 Stuttgart, Germany.
Bilgili, Harun; Buerger, Matthias; Stubenrauch, Cosima; Porada, Jan H., Univ Stuttgart, Inst Phys Chem, Pfaffenwaldring 55, D-70569 Stuttgart, Germany.}},
author = {Bilgili, Harun and Buerger, Matthias and Stubenrauch, Cosima and Porada, Jan H.},
author-email = {{cosima.stubenrauch@ipc.uni-stuttgart.de}},
biburl = {https://puma.ub.uni-stuttgart.de/bibtex/270dee24266ccbf90fa94002bc1e74d50/hermann},
doi = {{10.1016/j.jcis.2016.08.083}},
eissn = {{1095-7103}},
interhash = {7d16b88d7b5db6245def05324938731e},
intrahash = {70dee24266ccbf90fa94002bc1e74d50},
issn = {{0021-9797}},
journal = {{JOURNAL OF COLLOID AND INTERFACE SCIENCE}},
keywords = {- Hydrophobic IL Microemulsifying TX-100; in ionic liquids} of water water; {Nanostructure {[}BMIm]PF6},
keywords-plus = {{HYDROPHOBIC IONIC LIQUID; SOLVENT-SOLUTE INTERACTIONS; PHASE-BEHAVIOR;
NONIONIC SURFACTANTS; FIELD GRADIENT; TRITON X-100; CLOUD POINT;
MICROEMULSIONS; SPECTROSCOPY; HEXAFLUOROPHOSPHATE}},
language = {{English}},
month = {{DEC 15}},
number-of-cited-references = {{56}},
pages = {{237-248}},
publisher = {{ACADEMIC PRESS INC ELSEVIER SCIENCE}},
research-areas = {{Chemistry}},
times-cited = {{0}},
timestamp = {2017-05-18T09:32:12.000+0200},
title = {{About the nanostructure of the ternary system water - {[}BMIm]PF6 -
TX-100}},
type = {{Article}},
volume = {{484}},
web-of-science-categories = {{Chemistry, Physical}},
year = {{2016}}
}