Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Conduction mechanism of the anodic film on Fe-Cr alloys in sulfate solutions

Journal Article · · Journal of the Electrochemical Society
DOI:https://doi.org/10.1149/1.1392461· OSTI ID:20003175

The passive state of Fe-12% Cr and Fe-25% Cr alloys in 1 M sulfate solutions of pH 0 and 5 was studied with a combination of electrochemical techniques: impedance spectroscopy, photoelectrochemistry, and dc resistance measurements by the contact electric resistance technique. The investigations were supported by studies on pure metal constituents (Fe, Cr) in the same solutions. As a result, the steady-state passive film on the alloys (and on pure Cr) can be described as a thin, essentially insulating layer. Polarization of the steady-state metal/anodic film/electrolyte system to negative and positive potentials away from the potential region corresponding to the highest electronic resistance was concluded to lead to the generation of lower or higher valency defects at the interfaces via solid-state electrochemical reactions. These reactions result in a substantial increase of the conductivity in the first layers adjacent to either the metal/film or the film/electrolyte interface. At very negative (or very positive) potentials the film is transformed into a conductor allowing active (or transpassive) dissolution to take place. A quantitative physical model of the conduction mechanism on the basis of the surface charge approach is proposed and compared with experimental data.

Research Organization:
VTT Mfg. Technology, Espoo (FI)
OSTI ID:
20003175
Journal Information:
Journal of the Electrochemical Society, Journal Name: Journal of the Electrochemical Society Journal Issue: 9 Vol. 146; ISSN JESOAN
Country of Publication:
United States
Language:
English

Similar Records

The mechanism of the transpassive dissolution of chromium in acidic sulfate solutions
Journal Article · Mon Jun 01 00:00:00 EDT 1998 · Journal of the Electrochemical Society · OSTI ID:653354

Passivation of a Corrosion Resistant High Entropy Alloy in Non-oxidizing Sulfate Solutions
Journal Article · Thu Jan 31 23:00:00 EST 2019 · Acta Materialia · OSTI ID:1598845

Passivation of a corrosion resistant high entropy alloy in non-oxidizing sulfate solutions
Journal Article · Mon Oct 22 00:00:00 EDT 2018 · Acta Materialia · OSTI ID:1670005