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Electron transfer reaction on passive tantalum electrodes

✍ Scribed by J.W. Schultze; V.A. Macagno


Publisher
Elsevier Science
Year
1986
Tongue
English
Weight
834 KB
Volume
31
Category
Article
ISSN
0013-4686

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✦ Synopsis


The redox system Fe s+'s+ has been reinvestigated in dependence on the concentration of the redox system, the electrode potential, the film thickness d, temperature T and pH. The anodic electron transfer reaction is blocked completely, but cathodic reduction of Fe s+ takes place at large overvoltages. In the cathodic Tafel diagram various types of reactions can be distinguished: for very thin, mean and thick films. Activation energies decrease with overpotential and increase with increasing film thickness. The maximum rate constants k, indite the contribution of tunnel processes for thin films and classical transitions at the lower edge of the conduction band at the oxide surface for thick films. The inhuence of the film thickness is less than it is expected from theoretical models. The comparison of all results with theoretical predictions shows that probably four different processes have to be distinguished. This may be due to the changing band structure data with increasing glm thickness. Fqecially for thin films. the amorphous structure of the film with an incomplete band structure may cause deviations from theoretical models.


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