Membranes (Feb 2021)

Highly Dispersed CeO<sub>x</sub> Hybrid Nanoparticles for Perfluorinated Sulfonic Acid Ionomer–Poly(tetrafluoethylene) Reinforced Membranes with Improved Service Life

  • Juhee Ahn,
  • Mobina Irshad Ali,
  • Jun Hyun Lim,
  • Yejun Park,
  • In Kee Park,
  • Denis Duchesne,
  • Lisa Chen,
  • Juyoung Kim,
  • Chang Hyun Lee

DOI
https://doi.org/10.3390/membranes11020143
Journal volume & issue
Vol. 11, no. 2
p. 143

Abstract

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CeOx hybrid nanoparticles were synthesized and evaluated for use as radical scavengers, in place of commercially available Ce(NO3)3 and CeO2 nanoparticles, to avoid deterioration of the initial electrochemical performance and/or spontaneous aggregation/precipitation issues encountered in polymer electrolyte membranes. When CeOx hybrid nanoparticles were used for membrane formation, the resulting membranes exhibited improved proton conductivity (improvement level = 2–15% at 30–90 °C), and thereby electrochemical single cell performance, because the –OH groups on the hybrid nanoparticles acted as proton conductors. In spite of a small amount (i.e., 1.7 mg/cm3) of introduction, their antioxidant effect was sufficient enough to alleviate the radical-induced decomposition of perfluorinated sulfonic acid ionomer under a Fenton test condition and to extend the chemical durability of the resulting reinforced membranes under fuel cell operating conditions.

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