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Authors Ghanti, B.; Voit, B.; Banerjee, S.
Title Superprotonic Membranes from Phosphonic Acid-Anchored Pyridinyl Sulfonated Polytriazoles: Toward Intrinsic PA Doping
Date 14.11.2025
Number 0
Abstract Designing high-performing and cost-effective hydrocarbon-based proton exchange membranes (PEMs) is an effective strategy for replacing state-of-the-art perfluorosulfonated membranes. In this study, we developed a series of phosphonic ester-containing sulfonated polytriazoles, designated as PYPDSNa-XX, which intrinsically generate phosphonic acid-based sulfonated polytriazoles (PTs; PYPDSH-XX) with a pyridinyl moiety. We also synthesized a series of purely sulfonated PTs without any phosphonic esters (PYMASH-XX) to investigate the impact of the phosphonic acid [PA; –PO(OH)<sub>2</sub>] groups on the properties of the PEMs. To analyze the polymer structures and estimate the conversion of phosphonic ester to –PO(OH)<sub>2</sub>, we employed various one-dimensional (<sup>1</sup>H, <sup>13</sup>C, <sup>19</sup>F, and <sup>31</sup>P) and two-dimensional (<sup>1</sup>H-<sup>1</sup>H COSY and <sup>1</sup>H-<sup>13</sup>C HSQC) NMR techniques. X-ray photoelectron spectroscopy (XPS) was also used to confirm the formation of PA groups in the PYPDSH-XX copolymers. The copolymers exhibited high thermal, mechanical, and dimensional stability. Cross-sectional high-resolution transmission electron microscopy (HRTEM) investigations revealed a more distinct, interconnected, and well-segregated hydrophobic–hydrophilic phase morphology in the PYPDSH-XX membranes compared to the PYMASH-XX membranes. Notably, the PYPDSH-90 membrane demonstrated proton conductivity values as high as 388 mS/cm in water at 90 °C, outperforming the solely sulfonic acid-containing reference by a factor of 2, thus proving successful PA doping in the membranes. Additionally, under varying relative humidity conditions, the phospho-sulfonated PT (PYPDSH-XX) membranes displayed easier and less water-dependent proton conduction than the purely sulfonated PTs (PYMASH-XX). Furthermore, the copolymers demonstrated high oxidative stability, with a lifetime (τ) of at least 11 h and residual weight exceeding 92%. This work presents an effective method for synthesizing sulfonated proton exchange membranes (PEMs) that are intrinsically doped with PA, unlike traditional methods that involve adding phosphoric acid (H<sub>3</sub>PO<sub>4</sub>) externally.
Publisher American Chemical Society
Wikidata
Citation ACS Applied Polymer Materials 7 (2025) 15004-15018
DOI https://doi.org/10.1021/acsapm.5c03301
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