Corrosion protection of Ti/TiN, Cr/TiN, Ti/CrN, and Cr/CrN multi-coatings in simulated proton exchange membrane fuel cell environment
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Surfaces, Coatings and Films,Surfaces and Interfaces,Electronic, Optical and Magnetic Materials
Reference37 articles.
1. Materials for fuel-cell technologies
2. Performance of a 1kW-class PEMFC stack using TiN-coated 316 stainless steel bipolar plates
3. Corrosion studies on Fe-based amorphous alloys in simulated PEM fuel cell environment
4. Metallic bipolar plates for PEM fuel cells
5. Bipolar plates for PEM fuel cells: A review
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1. Effect of nitrogen pressure on the microstructure, conductivity, and corrosion resistance of ZrN-coated stainless steel as bipolar plate for proton exchange membrane fuel cell;Ceramics International;2024-08
2. Corrosion behavior of Ti–Pt-coated stainless steel for bipolar plates in polymer electrolyte membranes under water electrolysis conditions;Heliyon;2024-07
3. Ni/Graphene Coating for Enhanced Corrosion Resistance of Metal Foam Flow Field in Simulated PEMFC Cathode Environment;ACS Omega;2024-06-24
4. Revealing microstructure and the associated corrosion mechanism of Al/amorphous Al2O3/Al tri-layer coating deposited on depleted uranium by magnetron sputtering;Applied Surface Science;2024-06
5. Electrochemical performance of metal nitride coated titanium bipolar plate for proton exchange membrane water electrolyser;Journal of Power Sources;2024-03
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