A surface treatment to modify passive film properties formed on 316L stainless steel has been designed for bipolar plate application in PEMFC systems. This one is based on cerium insertion from electrochemical technique. The effect of this element addition on the composition of the passive films was
Application of AC-SECM in Corrosion Science: Local Visualisation of Inhibitor Films on Active Metals for Corrosion Protection
✍ Scribed by Maike Pähler; Dr. Juan José Santana; Prof. Dr. Wolfgang Schuhmann; Prof. Dr. Ricardo M. Souto
- Publisher
- John Wiley and Sons
- Year
- 2010
- Tongue
- English
- Weight
- 500 KB
- Volume
- 17
- Category
- Article
- ISSN
- 0947-6539
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✦ Synopsis
Abstract
The suitability of frequency‐dependent alternating‐current scanning electrochemical microscopy (4D AC‐SECM) for investigation of thin passivating layers covering the surface of corrosion‐inhibited metals has been demonstrated. Inhibition of copper corrosion by benzotriazole (BTAH) and methylbenzotriazole (MBTAH), which are effective inhibitors for this metal under many environmental conditions, was investigated. Strong dependencies were found for the AC z‐approach curves with both the duration of the inhibitor treatment and the frequency of the AC excitation signal applied in AC‐SECM. Both negative and positive feedback behaviours were observed in the AC approach curves for untreated copper and for Cu/BTAH and Cu/MBTAH samples. Negative feedback behaviour occurred in the low‐frequency range, whereas a positive feedback effect was observed at higher frequencies. A threshold frequency related to the passage from negative to positive regimes could be determined in each case. The threshold frequency for inhibitor‐modified samples was found always to be significantly higher than for the untreated metal, because the inhibitor film provides electrical insulation for the surface. Moreover, the threshold frequency increased with increasing surface coverage by the inhibitor. 4D AC‐SECM was successfully applied to visualizing spatially resolved differences in local electrochemical activity between inhibitor‐free and inhibitor‐covered areas of the sample.
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