Pasquini Luca, Zhakisheva Botagoz, Sgreccia Emanuela, Narducci Riccardo, Di Vona Maria Luisa, Knauth Philippe
CNRS, MADIREL (UMR 7246) and International Laboratory: Ionomer Materials for Energy, Aix Marseille Univ, Campus St. Jérôme, 13013 Marseille, France.
Department Industrial Engineering and International Laboratory: Ionomer Materials for Energy, University of Rome Tor Vergata, 00133 Roma, Italy.
Polymers (Basel). 2021 Feb 2;13(3):475. doi: 10.3390/polym13030475.
Proton-conducting ionomers are widespread materials for application in electrochemical energy storage devices. However, their properties depend strongly on operating conditions. In bio-fuel cells with a separator membrane, the swelling behavior as well as the conductivity need to be optimized with regard to the use of buffer solutions for the stability of the enzyme catalyst. This work presents a study of the hydrolytic stability, conductivity and mechanical behavior of different proton exchange membranes based on sulfonated poly(ether ether ketone) (SPEEK) and sulfonated poly(phenyl sulfone) (SPPSU) ionomers in phosphate buffer solution. The results show that the membrane stability can be adapted by changing the casting solvent (DMSO, water or ethanol) and procedures, including a crosslinking heat treatment, or by blending the two ionomers. A comparison with Nafion shows the different behavior of this ionomer versus SPEEK membranes.
质子传导离聚物是广泛应用于电化学储能装置的材料。然而,它们的性能强烈依赖于操作条件。在带有隔膜的生物燃料电池中,就使用缓冲溶液以保持酶催化剂的稳定性而言,其溶胀行为以及导电性都需要优化。这项工作展示了对基于磺化聚(醚醚酮)(SPEEK)和磺化聚(苯砜)(SPPSU)离聚物的不同质子交换膜在磷酸盐缓冲溶液中的水解稳定性、导电性和力学行为的研究。结果表明,可以通过改变浇铸溶剂(二甲基亚砜、水或乙醇)和工艺(包括交联热处理),或者通过将两种离聚物共混来调整膜的稳定性。与Nafion的比较显示了这种离聚物与SPEEK膜的不同行为。