Sulfonated PEEK-WC polymer was obtained according to chloro-sulfonic acid procedure making possible the preparation of different membrane samples with a sulfonation degree from 48 to 90%. Dense membranes were prepared from casting solutions of S-PEEK-WC dissolved in DMF. Proton conductivity measurements were performed on such S-PEEK-WC membranes in a range of temperature from 30 to 120 C and 100% of relative humidity, reaching 2.5 102 S cm1 as the best value at 100 C and with a sulfonation degree of 90%. In the meanwhile, the open circuit voltage of this S-PEEK-WC membrane (DS ¼ 90%) varied from 0.963 V at 60 C to 0.802 V at 100 C, demonstrating that an increase of temperature negatively affects the membrane performance due to the mechanical properties degradation. In this work, a wide experimental campaign was carried out to investigate the electrochemical performances in terms of polarization curves, open circuit voltage and proton conductivity of S-PEEK-WC membranes as well as the fuel crossover and water uptake.

Electrochemical characterization of sulfonated PEEK-WC membranes for PEM fuel cells

A Iulianelli;I Gatto;F Trotta;E Passalacqua;A Carbone;G Clarizia;A Gugliuzza;A Basile
2013

Abstract

Sulfonated PEEK-WC polymer was obtained according to chloro-sulfonic acid procedure making possible the preparation of different membrane samples with a sulfonation degree from 48 to 90%. Dense membranes were prepared from casting solutions of S-PEEK-WC dissolved in DMF. Proton conductivity measurements were performed on such S-PEEK-WC membranes in a range of temperature from 30 to 120 C and 100% of relative humidity, reaching 2.5 102 S cm1 as the best value at 100 C and with a sulfonation degree of 90%. In the meanwhile, the open circuit voltage of this S-PEEK-WC membrane (DS ¼ 90%) varied from 0.963 V at 60 C to 0.802 V at 100 C, demonstrating that an increase of temperature negatively affects the membrane performance due to the mechanical properties degradation. In this work, a wide experimental campaign was carried out to investigate the electrochemical performances in terms of polarization curves, open circuit voltage and proton conductivity of S-PEEK-WC membranes as well as the fuel crossover and water uptake.
2013
Istituto per la Tecnologia delle Membrane - ITM
Istituto di Tecnologie Avanzate per l'Energia - ITAE
Sulfonated PEEK-WC
Membranes
PEM fuel cell
Electrochemical pe
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/12391
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