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Self-assembled network polymer electrolyte membranes for application in fuel cells at 250 °C

  • Seungju Lee,
  • Jong Geun Seong,
  • YoungSuk Jo,
  • Son-Jong Hwang,
  • Gyeongseok Gwak,
  • Yongha Park,
  • Yeong Cheon Kim,
  • Katie Heeyum Lim,
  • Hee-Young Park,
  • Jong Hyun Jang,
  • Hyoung-Juhn Kim,
  • Suk-Woo Nam,
  • So Young Lee

摘要

Operating polymer electrolyte membrane (PEM) fuel cells at high temperatures can simplify water management and allow integration with high-purity fuel processing units. However, existing polybenzimidazole (PBI)-based PEM fuel cells face challenges due to the instability of proton transport above 160 °C. Here we report a PEM composed of para-PBI (p-PBI) and cerium hydrogen phosphate (CeHP) that can be used in a fuel cell at up to 250 °C. During fabrication, echinoid-shaped CeHP particles form a well-dispersed and interconnected self-assembled network within the PBI matrix (SAN–CeHP–PBI), allowing them to outperform p-PBI and conventional CeHP–PBI PEMs in terms of proton transport above 200 °C. We report a SAN–CeHP–PBI-based fuel cell that reaches a maximum power density of 2.35 W cm−2 (at 250 °C in dry H2/O2) with negligible degradation over 500 h during thermal cycling (at 160–240 °C, H2/air). SAN–CeHP–PBI also demonstrates excellent CO tolerance, showing promise for integration with liquid hydrogen carrier systems.