First-principles study of surface orientation dependent corrosion of BCC iron

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First-principles study of surface orientation dependent corrosion of BCC iron
Title:
First-principles study of surface orientation dependent corrosion of BCC iron
Journal Title:
Corrosion Science
Publication Date:
17 December 2021
Citation:
Jin, H., Blackwood, D. J., Wang, Y., Ng, M.-F., Tan, T. L. (2022). First-principles study of surface orientation dependent corrosion of BCC iron. Corrosion Science, 196, 110029. https://doi.org/10.1016/j.corsci.2021.110029
Abstract:
Using inputs from first-principles calculations, an ab initio model was employed to investigate crystal orientation dependent corrosion behavior of BCC iron. Results showed that the sequence of corrosion susceptibility of BCC Fe surfaces is in the order of (100)>(111)>(211)>(310)>(110). The higher corrosion current on (100) surface suggests that cathodic hydrogen evolution may largely determine the corrosion reactions under acidic environment. The predicted corrosion potential and current for lower index planes are in general agreement with available experiment. The model was further applied to study alloying effects with results validated via weight loss analysis of alloyant fabricated by arc melting.
License type:
Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0)
Funding Info:
This research / project is supported by the A*STAR - Structural Metal Alloys Program
Grant Reference no. : A18B1b0061
Description:
ISSN:
0010-938X
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