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The effect of 5-Chloroisatin derivatives as a corrosion inhibitors on mild steel in acid medium was studied through weight loss, potentiodynamic polarization and electrochemical impedance spectroscopy (EIS) techniques.
Scanning electron microscopy (SEM) was employed to analyze the surface topography of the uninhibited and inhibited mild steel.
The inhibition efficiency of the inhibiting compound increases with increase in inhibitor concentration at 303K, resulting in significant decrease in corrosion rate of the mild steel.
Thermodynamic adsorption and activation parameters were calculated for the corrosion inhibition process adsorption of 5-Chloroisatin derivatives on the steel obeyed the Langmuir adsorption model.
PhD in chemistry specializing in synthesis of new 5-Chloroisatin heterocyclic compounds, electrochemical study, calculation of functional theory of density (DFT), evaluation of biological activity and corrosion inhibiting effect in the acidic medium of The mild steel.
More than 20 publications in national and international newspapers.
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