AI Article Synopsis

  • The study analyzes how Ti-Pt-coated stainless steel bipolar plates behave under corrosion in a polymer electrolyte membrane water electrolysis (PEMWE) environment, using electrochemical tests and surface analysis.
  • Results show that the coated plates have significantly better corrosion resistance (1.68 × 10 A/cm) compared to bare SS316L plates (1.94 × 10 A/cm).
  • However, the coating's effectiveness decreases in the PEMWE environment due to electrolyte entering blistered areas of the coating, caused by oxygen gas pressure, which leads to corrosion of the underlying substrate.

Article Abstract

In this study, the corrosion behavior and degradation mechanism of Ti-Pt-coated stainless steel bipolar plates were investigated through electrochemical tests and surface analysis in a polymer electrolyte membrane water electrolysis (PEMWE) operating environment. The coated bipolar plate has a corrosion current density of only 1.68 × 10 A/cm, which is an order of magnitude lower than that of the bare SS316L substrate (1.94 × 10 A/cm), indicating that its corrosion resistance is superior to that of bare SS316L substrate. However, in the PEMWE operating environment, the protection efficiency of the coating and the corrosion resistance of the coated bipolar plate decreased. The degradation of the coated bipolar plate can be attributed to electrolyte penetration into the blistering areas of the coating layer with micro voids. Defects in the coating layer occur because of the pressure of oxygen gas generated within the coating layer under high-potential conditions, thereby exposing the substrate to the electrolyte and corrosion.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11315188PMC
http://dx.doi.org/10.1016/j.heliyon.2024.e34551DOI Listing

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