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Oxidation of Iron: The Relation between Oxidation Kinetics and Oxide Electronic Structure
60
Citations
16
References
2000
Year
EngineeringOxidation ResistanceIron MetabolismChemistryOxidation KineticsTunneling MicroscopyCorrosionQuantum MaterialsRedox ChemistryMetal OxidationMaterials SciencePhysicsOxide ElectronicsOxidation RateElemental MetalSolid-state PhysicOxygen Reduction ReactionNatural SciencesSurface ScienceCondensed Matter PhysicsApplied PhysicsFromhold-cook TheoryOxide Electronic StructureChemical KineticsDeoxygenation
The test of the validity of the Fromhold-Cook theory of metal oxidation for the O2/Fe system in the tunnel regime is impeded by the growth of a passivating Fe2+/Fe3+ double layer at T</=150 degrees C. However, during an intermediate anneal step at 200 degrees C, the Fe3+ is reduced to Fe2+. The oxidation rate of this annealed layer is in agreement with the Fromhold-Cook theory. At room temperature, the ionic current is rate limiting. For T>150 degrees C, the thermionic emission of electrons is rate limiting for oxygen coverages larger than 13x10(15) atoms/cm(2).
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