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The electrode reversibility is demonstrated by a polarization technique.
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Anisotropic corrosion behaviour of a single grain of pure iron in 0.05 mol dm−3 sulphuric acid (pH 1) was investigated by a simple polarization technique.
Electrocatalytic activity versus oxygen evolution of perovskite-type cobalt oxide (La1−xCaxCoO3, with x=0.0, 0.4, 0.4 and 0.6) was evaluated by potentiostatic polarization technique, as a function of the electrode chemical composition.
The corrosion and cavitation erosion characteristics in 3.5% NaCl solution at 23 °C were studied by potentiodynamic polarization technique and by means of a 20-kHz ultrasonic vibratory facility, respectively.
The corrosion resistance of the coatings was evaluated by potentiodynamic polarization technique.
The electrochemical oxidation and erosion behavior in 3.65% NaCl medium were studied by potentiodynamic polarization technique and characterized by atomic force microscopy (AFM).
The inhibitive action of orthomethoxy-substituted polyaniline (poly o-methoxyaniline), a new class of conducting poly o-methoxyanilineion of iron in acidic chloride solutionewhas been evaluated by EIS, linear polarization resistanclasseight lofs, and by logarithmiconductingtion technique.
Corrosion properties of the coatings were studied electrochemically by potentiodynamic polarization technique in simulated body fluid (SBF) at 36 ± 1 °C.
The corrosion behavior in 0.6 M NaCl and 0.5 M NaHCO3 solutions at 25 °C was studied by potentiodynamic polarization technique.
The electrochemical corrosion behavior of coated and uncoated SiCp/A356 composites was tested in 3.5 wt.% NaCl solution by potentiodynamic polarization technique with low scanning rates.
The corrosion behaviors of reinforcing bars embedded in concretes were monitored through accelerated corrosion test, corrosion current density and the corresponding corrosion rate by linear polarization technique (LPR).
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