Issue 7, 2025

Preparation of a new class of phosphonated hydrocarbon polymers based on polysulfone

Abstract

The membrane is the heart of an electrochemical cell. Nowadays, PFSA-based materials, e.g., Nafion®, are state-of-the-art in large-scale energy applications. However, PFSAs are relatively expensive and give rise to concerns regarding toxic intermediates in the production process. Moreover, their recyclability and their biodegradability are questionable. Thus, there is a strong need to develop alternative materials with comparable or better properties. This study presents a new class of phosphonated hydrocarbon polymers based on commercially available polysulfone Udel (PSU) synthesized by a lithiation reaction. The modified PSUs were subsequently phosphonated by a Michaelis–Arbuzov reaction. All synthesized polymers/ionomers were further characterized by NMR, DSC, TGA, GPC, TEM, and titration. Moreover, the first blend membranes could be produced out of the new class of PSU derivatives. In summary, four different polymers were synthesized, of which three were successfully phosphonated. Starting from the phosphonated species, three different acid-acid blend membranes were manufactured with sufficient ionic conductivity. These novel phosphonic acid group-containing materials are promising candidates for membranes or ionomers in electrochemical applications, like (HT)-PEMFCs, (HT)-PEMWEs, or redox flow batteries.

Graphical abstract: Preparation of a new class of phosphonated hydrocarbon polymers based on polysulfone

Supplementary files

Article information

Article type
Paper
Submitted
13 Du 2024
Accepted
18 Kev 2024
First published
09 Gen 2025
This article is Open Access
Creative Commons BY license

Polym. Chem., 2025,16, 879-890

Preparation of a new class of phosphonated hydrocarbon polymers based on polysulfone

P. Martschin, T. Prölß, A. Hutzler, S. Thiele and J. Kerres, Polym. Chem., 2025, 16, 879 DOI: 10.1039/D4PY01289E

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