We describe the construction and characterization of an ultrathin-film composite membrane (UTFCM) prepared by electropolymerization of a thin coating of poly[1-methyl-3(pyrrole-1-ylmethyl) pyridinium] (poly-MPP), across the surface of a microporous support membrane. The ion-exchange properties of the UTFCM were investigated by testing the permeability of the membrane for electroactive anions and cations. Both polycarbonate and alumina microporous membranes were employed as support membranes. The alumina supports proved superior in that thinner anion-permselective poly-MPP coatings could be obtained. These thinner coatings allowed for fast permeation of anions while still blocking the passage of cations. Alumina-poly-MPP composite membranes were used to construct a nitrate sensor in which the UTFCM separates the analyte solution from an internal sensing solution which contained the enzyme nitrate reductase and an electrocatalyst (methyl viologen).

Electrochemical Preparation and Characterization of an Anion-Permselective Composite Membrane for Sensor Technology

Pa;Guerriero;
1998

Abstract

We describe the construction and characterization of an ultrathin-film composite membrane (UTFCM) prepared by electropolymerization of a thin coating of poly[1-methyl-3(pyrrole-1-ylmethyl) pyridinium] (poly-MPP), across the surface of a microporous support membrane. The ion-exchange properties of the UTFCM were investigated by testing the permeability of the membrane for electroactive anions and cations. Both polycarbonate and alumina microporous membranes were employed as support membranes. The alumina supports proved superior in that thinner anion-permselective poly-MPP coatings could be obtained. These thinner coatings allowed for fast permeation of anions while still blocking the passage of cations. Alumina-poly-MPP composite membranes were used to construct a nitrate sensor in which the UTFCM separates the analyte solution from an internal sensing solution which contained the enzyme nitrate reductase and an electrocatalyst (methyl viologen).
1998
CHIMICA INORGANICA E DELLE SUPERFICI
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia - ICMATE
ultrathin him composite
membrane
cationic poly(pyrrole) derivative
permselectivity
electrochemical sensor
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/179990
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