Preuer F, Kessler F, Ghicov A, Weineck N, Hildebrand H, Spies A, Virtanen S (2026)
Publication Type: Journal article
Publication year: 2026
Book Volume: 672
Article Number: 239652
DOI: 10.1016/j.jpowsour.2026.239652
For the cathodic gas-diffusion layer (GDL) in proton exchange membrane water electrolysis (PEMWE), multiple layers of stretched metal could be an interesting solution. They combine good water and gas transport with low contact resistances and economic benefits. However, the corrosion behavior of the stainless steel used for GDLs (most common DIN 1.4404/AISI 316L) needs to be thoroughly investigated, as metal cations can harm the cell performance. Multiple manufacturing steps and cleaning of the stretched metal layers can impact its corrosion resistance. We herein investigated the impact of stretching, spot welding, and cutting of the gas diffusion layers, as well as the cleaning thereof in immersion tests, and analyzed the electrolyte via inductively coupled plasma mass spectrometry (ICP-MS). Surface analysis with X-ray photoelectron spectroscopy (XPS) complemented our investigations. Overall, ion release from stainless steel GDLs can be reduced by optimizing the manufacturing and cleaning steps, which can decrease Fenton reactivity and thus membrane degradation. Stainless steel cathode GDLs can improve the competitiveness of PEM water electrolysis cells without increasing the interfacial contact resistance (ICR).
APA:
Preuer, F., Kessler, F., Ghicov, A., Weineck, N., Hildebrand, H., Spies, A., & Virtanen, S. (2026). Influence of cutting processes, welding, and surface pretreatment on the metallic ion release of gas diffusion layer in PEM electrolysis systems. Journal of Power Sources, 672. https://doi.org/10.1016/j.jpowsour.2026.239652
MLA:
Preuer, F., et al. "Influence of cutting processes, welding, and surface pretreatment on the metallic ion release of gas diffusion layer in PEM electrolysis systems." Journal of Power Sources 672 (2026).
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