SYNTHESIS, CHARACTERIZATION, CORROSION INHIBITION OF MILD STEEL BY TWO SCHIFF BASES IN HCL AND DENSITY FUNCTIONAL THEORY STUDIES

Authors

  • A. Madani Laboratoire d’Électrochimie et Matériaux, Département de Génie des Procédés, Faculté de Technologie, Université Ferhat Abbas, Sétif-1, 19000- Algeria
  • L. Sibous Laboratoire d’Électrochimie et Matériaux, Département de Génie des Procédés, Faculté de Technologie, Université Ferhat Abbas, Sétif-1, 19000- Algeria
  • E. Bentouhami Laboratoire de Chimie, Ingénierie Moléculaire et Nanostructures, Université deSétif1, 19000- Algeria

DOI:

https://doi.org/10.4314/jfas.v13i2.13

Keywords:

weight loss method; inhibitor; polarization curves; DFT; HOMO; LUMO

Abstract

In this study, two Schiff bases namely (E,E)-N,N’-biphenyl-4-4’diylbis[1-(furan-2-yl)methanimine] (BEFu) and3-[(Z)-N(4’-aminobiphenyl-4yl)ethanimidoyl]-2-hydroy-6-methyl-4H-pyran-4-one (BEDh) have been synthesized and characterized using UV-visible, FTIR, and NMR techniques. The corrosion inhibition study of BEFu and BEDh was investigated for mild steel corrosion in 1M hydrochloric acid medium using weight loss method, potentiodynamic polarization, EIS techniques, and Density Functional Theory (DFT). The results showed that the inhibition efficiency increasing with concentration and revealing a mixed-type inhibitor of predominantly anodic type. To explain the inhibition abilities of those molecules adsorbed on the mild steel surface, quantum chemical calculations have been performed using DFT. The HOMO and LUMO energies were calculated to determine the global reactivity indexes.  The experimental and theoretical results were in good agreement.

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References

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Published

2021-02-28

How to Cite

MADANI, A.; SIBOUS, L.; BENTOUHAMI, E. SYNTHESIS, CHARACTERIZATION, CORROSION INHIBITION OF MILD STEEL BY TWO SCHIFF BASES IN HCL AND DENSITY FUNCTIONAL THEORY STUDIES. Journal of Fundamental and Applied Sciences, [S. l.], v. 13, n. 2, p. 864–891, 2021. DOI: 10.4314/jfas.v13i2.13. Disponível em: https://jfas.info/index.php/JFAS/article/view/703. Acesso em: 30 jan. 2025.

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