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Polyelectrolyte/surfactant films spread from neutral aggregates. / Campbell, Richard A.; Tummino, Andrea; Noskov, Boris A.; Varga, Imre.

In: Soft Matter, Vol. 12, No. 24, 2016, p. 5304-5312.

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Campbell, Richard A. ; Tummino, Andrea ; Noskov, Boris A. ; Varga, Imre. / Polyelectrolyte/surfactant films spread from neutral aggregates. In: Soft Matter. 2016 ; Vol. 12, No. 24. pp. 5304-5312.

BibTeX

@article{ac37eac0d66f4f36b30be2af631d5d7b,
title = "Polyelectrolyte/surfactant films spread from neutral aggregates",
abstract = "We describe a new methodology to prepare loaded polyelectrolyte/surfactant films at the air/water interface by exploiting Marangoni spreading resulting from the dynamic dissociation of hydrophobic neutral aggregates dispensed from an aqueous dispersion. The system studied is mixtures of poly(sodium styrene sulfonate) with dodecyl trimethylammonium bromide. Our approach results in the interfacial confinement of more than one third of the macromolecules in the system even though they are not even surface-active without the surfactant. The interfacial stoichiometry of the films was resolved during measurements of surface pressure isotherms in situ for the first time using a new implementation of neutron reflectometry. The interfacial coverage is determined by the minimum surface area reached when the films are compressed beyond a single complete surface layer. The films exhibit linear ripples on a length scale of hundreds of micrometers during the squeezing out of material, after which they behave as perfectly insoluble membranes with consistent stoichiometric charge binding. We discuss our findings in terms of scope for the preparation of loaded membranes for encapsulation applications and in deposition-based technologies.",
author = "Campbell, {Richard A.} and Andrea Tummino and Noskov, {Boris A.} and Imre Varga",
note = "Publisher Copyright: {\textcopyright} 2016 The Royal Society of Chemistry. Copyright: Copyright 2016 Elsevier B.V., All rights reserved.",
year = "2016",
doi = "10.1039/c6sm00637j",
language = "English",
volume = "12",
pages = "5304--5312",
journal = "Soft Matter",
issn = "1744-683X",
publisher = "Royal Society of Chemistry",
number = "24",

}

RIS

TY - JOUR

T1 - Polyelectrolyte/surfactant films spread from neutral aggregates

AU - Campbell, Richard A.

AU - Tummino, Andrea

AU - Noskov, Boris A.

AU - Varga, Imre

N1 - Publisher Copyright: © 2016 The Royal Society of Chemistry. Copyright: Copyright 2016 Elsevier B.V., All rights reserved.

PY - 2016

Y1 - 2016

N2 - We describe a new methodology to prepare loaded polyelectrolyte/surfactant films at the air/water interface by exploiting Marangoni spreading resulting from the dynamic dissociation of hydrophobic neutral aggregates dispensed from an aqueous dispersion. The system studied is mixtures of poly(sodium styrene sulfonate) with dodecyl trimethylammonium bromide. Our approach results in the interfacial confinement of more than one third of the macromolecules in the system even though they are not even surface-active without the surfactant. The interfacial stoichiometry of the films was resolved during measurements of surface pressure isotherms in situ for the first time using a new implementation of neutron reflectometry. The interfacial coverage is determined by the minimum surface area reached when the films are compressed beyond a single complete surface layer. The films exhibit linear ripples on a length scale of hundreds of micrometers during the squeezing out of material, after which they behave as perfectly insoluble membranes with consistent stoichiometric charge binding. We discuss our findings in terms of scope for the preparation of loaded membranes for encapsulation applications and in deposition-based technologies.

AB - We describe a new methodology to prepare loaded polyelectrolyte/surfactant films at the air/water interface by exploiting Marangoni spreading resulting from the dynamic dissociation of hydrophobic neutral aggregates dispensed from an aqueous dispersion. The system studied is mixtures of poly(sodium styrene sulfonate) with dodecyl trimethylammonium bromide. Our approach results in the interfacial confinement of more than one third of the macromolecules in the system even though they are not even surface-active without the surfactant. The interfacial stoichiometry of the films was resolved during measurements of surface pressure isotherms in situ for the first time using a new implementation of neutron reflectometry. The interfacial coverage is determined by the minimum surface area reached when the films are compressed beyond a single complete surface layer. The films exhibit linear ripples on a length scale of hundreds of micrometers during the squeezing out of material, after which they behave as perfectly insoluble membranes with consistent stoichiometric charge binding. We discuss our findings in terms of scope for the preparation of loaded membranes for encapsulation applications and in deposition-based technologies.

UR - http://www.scopus.com/inward/record.url?scp=84975229368&partnerID=8YFLogxK

U2 - 10.1039/c6sm00637j

DO - 10.1039/c6sm00637j

M3 - Article

VL - 12

SP - 5304

EP - 5312

JO - Soft Matter

JF - Soft Matter

SN - 1744-683X

IS - 24

ER -

ID: 7598306