Title of article :
Corrosion Inhibition of Brass in 3% NaCl Solution by Electrosynthesized Poly 4- amino-3-méthyl-1,2,4-triazole-5-thione
Author/Authors :
Chebabe, D. Laboratory of Natural Substances & Synthesis and Molecular Dynamic - Faculty of Sciences and Techniques - Moulay Ismail University of Meknes - BP 509 - Boutalamine, 52000 Errachidia, Morocco , Damej, M. Laboratory of Materials Electrochemistry and Environment - Faculty of Sciences - University Ibn Tofail - B.P 133, 1400, Kenitra, Morocco , Dermaj, A. Laboratory of Materials Electrochemistry and Environment - Faculty of Sciences - University Ibn Tofail - B.P 133, 1400, Kenitra, Morocco , Oubair, A. Laboratory of Natural Substances & Synthesis and Molecular Dynamic - Faculty of Sciences and Techniques - Moulay Ismail University of Meknes - BP 509 - Boutalamine, 52000 Errachidia, Morocco , Benassaoui, H. Laboratory of Materials Electrochemistry and Environment - Faculty of Sciences - University Ibn Tofail - B.P 133, 1400, Kenitra, Morocco , Erramli, H. Laboratory of Materials Electrochemistry and Environment - Faculty of Sciences - University Ibn Tofail - B.P 133, 1400, Kenitra, Morocco , Hajjaji, N. Laboratory of Materials Electrochemistry and Environment - Faculty of Sciences - University Ibn Tofail - B.P 133, 1400, Kenitra, Morocco , Srhiri, A. Sevichim Society SARL Productions of Corrosion Inhibitors - 101 Rue Maamoura, N° 10, Kenitra
Abstract :
This paper describes the kinetics of the electropolymerization of 4-amino-3-methyl-1,2,4-triazole-5-thiol (MTSNH) on a brass substrate
in alkaline solution containing methanol. Our laboratory has developed a new synthesis strategy for MTSNH. This compound was purified
and characterized by 1H NMR and 13CNMR spectroscopies. The electrochemical study was investigated using cyclic polarization,
chronoamperometry, electrochemical impedance techniques and scanning electronic microscopy. The polymeric film was achieved by
successive cyclic voltammetry sweep between 0 and 2.2 V at the scan rate of 10 mV s-1. The effect of the scan rate for 10-3 M of MTSNH
in a basic solution of potassium hydroxide 0.1 M containing methanol shows that the increase of the scan rate is accompanied by the
increase of the intensity of the first oxidation peak, indicating the acceleration of the studied process. We have also shown that the
monomer oxidation reaction is essentially irreversible and controlled by a diffusion process. The protective effect of the film formed on
brass has been studied in a 3% NaCl. The results showed important inhibition efficiency, about 83% for 1 h of testing time.
Keywords :
Cyclic voltammetry , Chronoamperometry , Brass alloy , Corrosion , Inhibition , MTSNH