Two-dimensional NMR spectroscopy reveals cation-triggered backbone degradation in polysulfone-based anion exchange membranes

Двумерная ЯМР-спектроскопия выявляет инициированную катионами деструкцию основной цепи анионообменных мембран на основе полисульфона
Christopher G. Arges, Vijay Ramani
2013-01-18

anion exchange membranesether hydrolysispolysulfone backbone degradationquaternary carbon hydrolysistwo-dimensional NMR spectroscopy
Anion exchange membranes (AEMs) find widespread applications as an electrolyte and/or electrode binder in fuel cells, electrodialysis stacks, flow and metal-air batteries, and electrolyzers. AEMs exhibit poor stability in alkaline media; their degradation is induced by the hydroxide ion, a potent nucleophile. We have used 2D NMR techniques to investigate polymer backbone stability (as opposed to cation stability) of the AEM in alkaline media. We report the mechanism behind a peculiar, often-observed phenomenon, wherein a demonstrably stable polysulfone backbone degrades rapidly in alkaline solutions upon derivatization with alkaline stable fixed cation groups. Using COSY and heteronuclear multiple quantum correlation spectroscopy (2D NMR), we unequivocally demonstrate that the added cation group triggers degradation of the polymer backbone in alkaline via quaternary carbon hydrolysis and ether hydrolysis, leading to rapid failure. This finding challenges the existing perception that having a stable cation moiety is sufficient to yield a stable AEM and emphasizes the importance of the often ignored issue of backbone stability.
1
A polysulfone backbone that is stable in alkaline solution degrades rapidly after functionalization with alkaline-stable fixed cation groups.
2
Backbone stability is an essential but often overlooked design criterion for alkaline-stable anion exchange membranes.
3
COSY and heteronuclear multiple quantum correlation NMR demonstrate that cation incorporation triggers backbone degradation through quaternary-carbon and ether hydrolysis.
4
The resulting degradation causes rapid anion exchange membrane failure, showing that cation stability alone does not ensure overall AEM stability.
5
Two-dimensional NMR spectroscopy was used to investigate polysulfone backbone stability in alkaline media independently of cation stability.

polysulfone-based anion exchange membranes in alkaline media

cation-triggered degradation mechanisms of the polymer backbone, including quaternary carbon and ether hydrolysis, leading to membrane failure

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2013-01-18
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Christopher G. Arges
Vijay Ramani
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