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May 10, 2026Chemical Communications0 citations

Water-confined CuFe Prussian blue analogues empower Nafion membranes for high-temperature/low-humidity fuel cells

JZJun ZhangCZChangming ZhongXZXuan Zhou

Key Points

  • This research aims to improve Nafion membrane performance under high-temperature and low-humidity conditions by using CuFe Prussian blue analogues.
  • Engineered a CuFe-PBA/Nafion composite membrane
  • Integrated edge-passivated CuFe Prussian blue analogue nanocubes
  • Targeted a 1.0 wt% composite concentration
  • Achieved increased proton conductivity in the CuFe-PBA/Nafion composite membrane
  • Demonstrated effective performance under high-temperature, low-humidity conditions
  • Showed enhanced resistance to dehydration compared to standard Nafion membranes

Abstract

To combat Nafion dehydration under high-temperature, low-humidity conditions, we engineered a CuFe-PBA/Nafion composite membrane by integrating edge-passivated CuFe Prussian blue analogue nanocubes. The 1.0 wt% composite membrane attains a proton...

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6a0021e6c8f74e3340f9ce5ehttps://doi.org/10.1039/d6cc02010k
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