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01-01-2025 | Original Paper

Synthesis and characterization of a novel graft polymer based hydrophobic polysulfone main chain and hydrophilic sulfonated polyvinyl alcohol side chain as proton exchange membrane for DMFC

Authors: Chengyun Y. Yuan, Qun Li, Yunfa F. Dong, Zupan P. Mao, Weidong D. He, Cenqi Q. Yan, Yinghan H. Wang, Pei Cheng

Published in: Journal of Polymer Research | Issue 1/2025

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Abstract

The article presents the synthesis and characterization of a novel graft polymer based on a hydrophobic polysulfone main chain and hydrophilic sulfonated polyvinyl alcohol side chain for use as a proton exchange membrane (PEM) in direct methanol fuel cells (DMFCs). Traditional PEMs based on aromatic polymers face a trilemma where improvements in proton conductivity often come at the expense of methanol permeability and mechanical properties. The novel PSU-g-SPVA graft polymer, synthesized through Reversible Addition-Fragmentation Chain Transfer (RAFT) polymerization, harmoniously balances these critical performance factors. The article delves into the impact of varying PSU-g-SPVA concentrations on the resulting blended membranes' properties, including proton conductivity, methanol permeability, mechanical stability, and chemical durability. The blend membranes, incorporating Nafion, show excellent compatibility and enhanced performance, making them a promising solution for the next generation of PEMs in DMFCs.

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Metadata
Title
Synthesis and characterization of a novel graft polymer based hydrophobic polysulfone main chain and hydrophilic sulfonated polyvinyl alcohol side chain as proton exchange membrane for DMFC
Authors
Chengyun Y. Yuan
Qun Li
Yunfa F. Dong
Zupan P. Mao
Weidong D. He
Cenqi Q. Yan
Yinghan H. Wang
Pei Cheng
Publication date
01-01-2025
Publisher
Springer Netherlands
Published in
Journal of Polymer Research / Issue 1/2025
Print ISSN: 1022-9760
Electronic ISSN: 1572-8935
DOI
https://doi.org/10.1007/s10965-024-04216-9

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