Abstract
An XY segmented cell was developed for low temperature PEM water electrolysis (PEMWE). The system can assess the local performance by enabling in situ measurements of spatial currents and impedances. In this work, we show through experiments, as well as through modelling work, that the porous transport layer (PTL) must be segmented to eliminate crosstalk. Accurate measurements are only possible when crosstalk is fully eliminated. The XY segmented cell is applied to a case study characterizing the impact of a PTL platinum coating void on spatial performance. The localized performance impact of the coating void is found to be orientation specific: coating voids facing the catalyst layer reduce performance significantly more than coating voids facing the flow field. The results suggest that the tolerances for PTL coating uniformity can be lower at the side facing the flow field. The work showcases the feasibility of the XY segmented cell for impact assessment studies. The presented XY segmented cell enables the characterization of spatial phenomena in PEMWE devices and is envisioned to support modeling efforts and the investigation of manufacturing related tolerances for mass produced PEMWE devices.
| Original language | American English |
|---|---|
| Number of pages | 14 |
| Journal | Journal of the Electrochemical Society |
| Volume | 173 |
| Issue number | 8 |
| DOIs | |
| State | Published - 2026 |
NLR Publication Number
- NLR/JA-5900-99324
Keywords
- diagnostics
- electrolyzer
- hydrogen
- impedance
- PEMWE
- segmented cell
- spatial
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