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Evaluating the Effects of Anode Porous Transport Layer on the Performance and Durability of Anion Exchange Membrane Electrolyzers

  • Saad Intikhab
  • , Alexandra Oliveira
  • , Kimberely Reeves
  • , Haoran Yu
  • , Yushan Yan
  • , Shaun Alia
  • University of Delaware
  • Oak Ridge National Laboratory

Research output: Contribution to journalArticlepeer-review

1 Scopus Citations

Abstract

As anion exchange membrane systems have emerged as a competitive low temperature electrolysis technology, research has expanded to other components and device integration. In this study, nickel (Ni) and stainless steel (SS)-based porous transport layers (PTLs) are investigated in membrane electrode assemblies (MEAs). Compared to MEAs using Ni, the SS PTL shows higher performance due to less kinetics and residual loss and possibly due to a combination of iron mobility improving oxygen evolution reactivity and electron conduction pathways, as well as higher porosity increasing site access. Voltage decay rates of approximately 144 and 115 ..mu..V/h, respectively, for the Ni and SS PTLs are found, although the long-term durability and lifetime implications are convoluted. Voltage breakdown analysis confirms that both PTLs saw significant increases in residual loss possibly due to catalyst/PTL property changes that affected electronic, ionic, and mass transport pathways. For the Ni PTL, a higher proportion of the losses were due to cell kinetics; comparatively, more of the SS PTL losses were due to increases in the high frequency resistance. The experimental findings presented here provide insights on the impact of the PTL materials and their properties.
Original languageAmerican English
Pages (from-to)31371-31382
Number of pages12
JournalACS Omega
Volume11
Issue number21
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/JA-5900-96208

Keywords

  • catalysts
  • degradation
  • electrodes
  • electrolysis
  • layers
  • membranes

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