Polyolefin‐Based Anion Exchange Membranes with Superior Performance and Long‐Term Durability for Green Hydrogen Production

Author:

Roggi Andrea1ORCID,Guazzelli Elisa1ORCID,Agonigi Gabriele2ORCID,Filpi Antonio2,Resta Claudio2ORCID,Martinelli Elisa1ORCID

Affiliation:

1. Department of Chemistry and Industrial Chemistry University of Pisa via Moruzzi 13 Pisa 56124 Italy

2. Enapter s.r.l. Via di Lavoria 56G Crespina‐Lorenzana (Pisa) 56040 Italy

Abstract

AbstractIn this work, a commercially available styrene‐butadiene block copolymer is functionalized with vinyl benzyl chloride (VBC) via solution free‐radical polymerization to obtain g‐VBC‐x graft copolymers. The molar content of VBC, also named functionalization degree (FD) or x, of g‐VBC‐x is varied in the range 10–27 mol%, simply by varying the concentration of VBC monomer in the feed or the reaction time. The g‐VBC‐x copolymers are used to prepare films by solution casting that are converted into anionic exchange membranes (AEMs) by heterogeneous quaternization reaction with trimethylamine (TMA). The membranes are extensively characterized to assess their thermal, mechanical, and ex‐situ electrochemical properties. The best performing AEMs having an FD of 20% and 27% are tested in an AEM single‐cell electrolyzer. Both of them are found to retain their original conductivity after more than 40 and 100 days, respectively. In particular, the membrane with the higher FD is characterized by the best in‐situ performance both in terms of ionic conductivity and cell potential.

Publisher

Wiley

Subject

Materials Chemistry,Organic Chemistry,Polymers and Plastics,Physical and Theoretical Chemistry,Condensed Matter Physics

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