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Facile construction of a highly proton-conductive matrix-mixed membrane based on a -SOH functionalized polyamide. | LitMetric

Facile construction of a highly proton-conductive matrix-mixed membrane based on a -SOH functionalized polyamide.

Soft Matter

School of Chemistry and Chemical Engineering, Shandong University, No. 27 Shanda South Road, Ji'nan 250100, Shandong Province, People's Republic of China.

Published: July 2022

AI Article Synopsis

  • The study focuses on creating low-cost, efficient proton-conductive electrolytes for proton exchange membrane (PEM) fuel cells, specifically using a newly synthesized polyamide with -SOH groups called PA(PhSO3H)2.
  • Electrochemical tests show that PA(PhSO3H)2 has a proton conductivity significantly higher than a comparable polyamide without -SOH groups, achieving up to 5.54 × 10⁻² S cm at high humidity and temperature conditions.
  • When mixed with polyacrylonitrile (PAN) in a specific ratio, the resulting membrane shows even better conductivity of 5.82 × 10⁻² S cm and demonstrates

Article Abstract

Developing a facile strategy to construct low-cost and efficient proton-conductive electrolytes is pivotal in the practical application of proton exchange membrane (PEM) fuel cells. Herein, a polyamide with in-built -SOH moieties, PA(PhSO3H)2, was synthesized a simple one-pot polymeric acylation process. Investigations electrochemical impedance spectroscopy (EIS) measurements revealed that the fabricated PA(PhSO3H)2 displays a proton conductivity of up to 5.54 × 10 S cm at 353 K under 98% relative humidity (RH), which is more than 2 orders of magnitude higher than that of its -SOH-free analogue PA(Ph)2 (2.38 × 10 S cm) under the same conditions. Therefore, after mixing with polyacrylonitrile (PAN) at different ratios, PA(PhSO3H)2-based matrix-mixed membranes were subsequently made and the analysis results revealed that the proton conductivity can reach up to 5.82 × 10 S cm at 353 K and 98% RH when the weight ratio of PA(PhSO3H)2 : PAN is in 3 : 1 (labeled as PA(PhSO3H)2-PAN(3 : 1)), the value of which is comparable even to those of commercially available electrolytes that are used in PEM fuel cells. In addition, continuous testing shows that PA(PhSO3H)2-PAN(3 : 1) possesses long-life reusability. This work demonstrates that, utilizing the simple reaction of polymeric acylation with a sulfonated module as a precursor, highly effective proton-conductive membranes for PEM fuel cells can be achieved in a facile manner.

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Source
http://dx.doi.org/10.1039/d2sm00451hDOI Listing

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