DFT Study of Oxygen Reduction Reaction on Chromia and Hematite: Insights into Corrosion Inhibition

Page view(s)
8
Checked on Aug 05, 2025
DFT Study of Oxygen Reduction Reaction on Chromia and Hematite: Insights into Corrosion Inhibition
Title:
DFT Study of Oxygen Reduction Reaction on Chromia and Hematite: Insights into Corrosion Inhibition
Journal Title:
Journal of Physical Chemistry C
Publication Date:
02 June 2020
Citation:
Ng, M.-F, Blackwood, D. J., Jin, H., Tan, T. L. DFT Study of Oxygen Reduction Reaction on Chromia and Hematite: Insights into Corrosion Inhibition. J. Phys. Chem. C, 2020, 124, 13799-13808
Abstract:
In ferrous alloys, chromia (Cr2O3) and hematite (Fe2O3) could serve as impervious passive layers to protect metal from corrosion. However, their passivating effect becomes questionable when localised defects are formed, since the oxide layers could promote oxygen reduction reactions (ORRs) as cathodes for the anodic dissolution of the exposed Fe atoms at the defect sites. Using DFT+U calculations, we investigate the ORRs on the Cr2O3 and Fe2O3 surfaces. We found that the Cr2O3 layer discourages cathodic ORRs more than the Fe2O3 layer due to a higher ORR overpotential and is thus a more effective passive layer. We also check the overpotentials of the passive layers with Al, Fe, Cr, Mn, Mo and Ni alloyants. We predict that Mo doping could further suppress the ORRs on both layers. In contrast, Mn is detrimental as it accelerates the oxygen reduction.
License type:
Publisher Copyright
Funding Info:
This research / project is supported by the A*STAR - Structural Metal Alloys Programme
Grant Reference no. : A18B1b0061
Description:
This document is the Accepted Manuscript version of a Published Work that appeared in final form in Journal of Physical Chemistry C, copyright © American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acs.jpcc.0c03559.
ISSN:
1932-7455
1932-7447
Files uploaded:

File Size Format Action
jpcc2020.pdf 1.47 MB PDF Open