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Polymer inclusion membranes: The concept of fixed sites membrane revised
Authors:Cludia Fonts  Rafik Tayeb  Mahmoud Dhahbi  Emmanuelle Gaudichet  Francette Thominette  Pascale Roy  Karine Steenkeste  Marie-Pierre Fontaine-Aupart  Sophie Tingry  Emmanuel Tronel-Peyroz  Patrick Seta
Institution:

aDepartment of Analytical Chemistry, University of Girona, 17071 Girona, Spain

bLaboratoire Eau et Technologies Membranaires, CERTE, BP 273, 8020 Soliman, Tunisia

cEcole Nationale Supérieure d’Arts et Métiers, 151 Bd de l’Hôpital, Paris 75013, France

dUnité de Recherche Soleil, L’Orme des Merisiers, Saint-Aubin, BP 48, 91192 Gif Sur Yvette Cedex, France

eLaboratoire de Photophysique Moléculaire, CNRS, Université Paris-Sud, Bât 210, 91405 Orsay Cedex, France

fInstitut Européen des Membranes, UMR CNRS 5635, 1919 route de Mende, 34293 Montpellier Cedex 5, France

Abstract:The mechanism of facilitated transport of metal ions across polymer inclusion membranes (PIMs) is revised on the basis of transport flux measurements and of new data brought by techniques sensitive to local inter-molecular interactions and molecular diffusion. Cellulose triacetate (CTA) membranes built with two types of inclusion carriers: a liquid one Aliquat 336 and a crystalline one Lasalocid A, both able to carry metal ions across PIMs and supported liquid membranes (SLMs) made of the same components, have been compared. Both PIM systems show similar effects for what concern the need of a carrier threshold concentration for the occurrence of a transport flux across PIM as revealed by flux and fluorescence correlation spectroscopy (FCS) measurements, and the dependence of the chemical nature of plasticizers on the metal ion flux. These systems also present similar Raman and far IR signatures of structural evolution of PIMs with the increase of the carrier concentration within the CTA matrix.

All the presented data are interpreted as concern PIMs, according to an evolution of chemical interactions between components of the polymeric membrane able to lead to a phase transition. This phase transition type of the carrier-plasticized polymer system is induced by the increase of carrier concentration in the polymer chains. The PIM progressively organizes itself like a liquid SLM because of the enhancement of preferential solvent interactions between the carrier and the plasticizer.

The main conclusion of this study is that the classically adopted “hopping” transport mechanism between fixed carrier sites in a PIM does not apply to such carrier chemically unbound to polymer membrane systems.

Keywords:Polymer inclusion membrane (PIM)  Supported liquid membrane (SLM)  Facilitated transport mechanism  Cellulose triacetate (CTA)  Lasalocid A  Aliquat 336
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