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Electrochemical, quantum chemical, and molecular dynamics studies on the interaction of 4-amino-4H,3,5-di(methoxy)-1,2,4-triazole (ATD), BATD, and DBATD on copper metal in 1N H2SO4

✍ Scribed by S. John; J. Joy; M. Prajila; A. Joseph


Publisher
John Wiley and Sons
Year
2011
Tongue
German
Weight
1008 KB
Volume
62
Category
Article
ISSN
0947-5117

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✦ Synopsis


Abstract

The interaction of 4‐amino‐4H,3,5‐di(methoxy)‐1,2,4‐triazole (ATD), (4‐(benzylideneamino)‐4H‐1,2,4‐triazole‐3,5‐diyl) dimethanol (BATD), and (4‐(4‐(dimethylamino) benzylideneamino))‐4H‐1,2,4‐triazole‐3,5‐diyl) dimethanol (DBATD) on copper in 1 N sulfuric acid was investigated by potentiodynamic polarization (Tafel), ac impedance (EIS), molecular dynamic (MD) studies, and quantum chemical calculations at 300 K. Polarization studies clearly showed that ATD, BATD, and DBATD act as mixed type inhibitors. As the electron density around the inhibitor molecule increases due to substitution, the inhibition efficiency also increases correspondingly. Quantum chemical approach was used to calculate some electronic properties of these molecules to ascertain the correlation between inhibitive effect and molecular structure. Both the experimental and theoretical studies agree well in this regard and confirm that DBATD is having a better interaction with the metal surface in 1 N sulfuric acid than BATD and ATD. The adsorption behaviors of these molecules on the copper surface have been studied using MDs method and density functional theory.