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Advancing the Performance of Anion Exchange Membrane Electrolysis by Employing a Powder-Based Ionomer During Anode Catalyst Layer Fabrication

  • Sandia National Laboratories

Research output: Contribution to journalArticlepeer-review

1 Scopus Citations

Abstract

The performance of anion exchange membrane water electrolysis (AEMWE) can be significantly improved by utilizing powdered ionomers during the fabrication of the anode catalyst layer (CL) to modify the CL properties. When comparing powdered ionomers to dispersed ionomers across various catalysts-including cobalt oxide (Co3O4), nickel-iron oxide (NiFe2O4), and iridium oxide (IrO2)-the anode fabricated with powdered ionomers demonstrates improved performance in polarization curves, enhanced charge transfer kinetics, and reduced ohmic and transport losses, as evidenced by voltage breakdown and electrochemical impedance spectroscopy analyses. Optimal performance is achieved using a Co3O4 catalyst with a 10 wt % powdered ionomer via the catalyst-coated substrate method. Microscopy analyses reveal that electrodes formed with powdered ionomers during fabrication exhibit a more uniform catalyst and ionomer distribution, increased porosity with smaller pore areas, improved electronic conduction with less catalyst agglomeration isolated by a nonconductive ionomer, and enhanced interfacial contact with the membrane and transport layer. These findings highlight that ionomers in a powdered form can promote beneficial properties and are a promising approach to improving AEMWE efficiency.
Original languageAmerican English
Pages (from-to)2611-2623
Number of pages13
JournalACS Applied Energy Materials
Volume9
Issue number5
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/JA-5900-93259

Keywords

  • anion exchange membrane water electrolysis
  • catalyst/ionomer distribution
  • distribution of relaxation times (DRT)
  • electrode fabrication
  • impedance modeling
  • powdered form of ionomer

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