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Effective corrosion inhibition of mild steel in hydrochloric acid by newly synthesized Schiff base nano Co(ii) and Cr(iii) complexes: spectral, thermal, electrochemical and DFT (FMO, NBO) studies

Two new cobalt(ii) and chromium(iii) complexes were synthesized and characterized by FT-IR, (1)HNMR, UV, elemental analysis, TGA, conductivity, XRD, SEM, and magnetic susceptibility measurements. Structural analysis revealed a bi-dentate chelation and octahedral geometry for the synthesized complexe...

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Autores principales: Melhi, Saad, Bedair, Mahmoud A., Alosaimi, Eid H., Younes, Ayman A. O., El-Shwiniy, Walaa H., Abuelela, Ahmed M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9661184/
https://www.ncbi.nlm.nih.gov/pubmed/36425733
http://dx.doi.org/10.1039/d2ra06571a
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author Melhi, Saad
Bedair, Mahmoud A.
Alosaimi, Eid H.
Younes, Ayman A. O.
El-Shwiniy, Walaa H.
Abuelela, Ahmed M.
author_facet Melhi, Saad
Bedair, Mahmoud A.
Alosaimi, Eid H.
Younes, Ayman A. O.
El-Shwiniy, Walaa H.
Abuelela, Ahmed M.
author_sort Melhi, Saad
collection PubMed
description Two new cobalt(ii) and chromium(iii) complexes were synthesized and characterized by FT-IR, (1)HNMR, UV, elemental analysis, TGA, conductivity, XRD, SEM, and magnetic susceptibility measurements. Structural analysis revealed a bi-dentate chelation and octahedral geometry for the synthesized complexes. The optical band gap of the Co(ii)-L and Cr(iii)-L complexes was found to be 3.00 and 3.25 eV, respectively revealing semiconducting properties. The X-ray diffraction patterns showed nano-crystalline particles for the obtained complexes. In addition, the synthesized metal complexes were examined as corrosion inhibitors for mild steel in HCl solution. The electrochemical investigations showed a maximum inhibition efficiency of 96.60% for Co(ii)-L and 95.45% for Cr(iii)-L where both complexes acted as mixed-type inhibitors. Frontier Molecular orbital (FMO) and Natural bond orbital (NBO) computations showed good tendency of the ligand to donate electrons to the metal through nitrogen atoms while the resultant complexes tended to donate electrons to mild steel more effectively through oxygen atoms and phenyl groups. A comparison between experimental and theoretical findings was considered through the discussion.
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spelling pubmed-96611842022-11-23 Effective corrosion inhibition of mild steel in hydrochloric acid by newly synthesized Schiff base nano Co(ii) and Cr(iii) complexes: spectral, thermal, electrochemical and DFT (FMO, NBO) studies Melhi, Saad Bedair, Mahmoud A. Alosaimi, Eid H. Younes, Ayman A. O. El-Shwiniy, Walaa H. Abuelela, Ahmed M. RSC Adv Chemistry Two new cobalt(ii) and chromium(iii) complexes were synthesized and characterized by FT-IR, (1)HNMR, UV, elemental analysis, TGA, conductivity, XRD, SEM, and magnetic susceptibility measurements. Structural analysis revealed a bi-dentate chelation and octahedral geometry for the synthesized complexes. The optical band gap of the Co(ii)-L and Cr(iii)-L complexes was found to be 3.00 and 3.25 eV, respectively revealing semiconducting properties. The X-ray diffraction patterns showed nano-crystalline particles for the obtained complexes. In addition, the synthesized metal complexes were examined as corrosion inhibitors for mild steel in HCl solution. The electrochemical investigations showed a maximum inhibition efficiency of 96.60% for Co(ii)-L and 95.45% for Cr(iii)-L where both complexes acted as mixed-type inhibitors. Frontier Molecular orbital (FMO) and Natural bond orbital (NBO) computations showed good tendency of the ligand to donate electrons to the metal through nitrogen atoms while the resultant complexes tended to donate electrons to mild steel more effectively through oxygen atoms and phenyl groups. A comparison between experimental and theoretical findings was considered through the discussion. The Royal Society of Chemistry 2022-11-14 /pmc/articles/PMC9661184/ /pubmed/36425733 http://dx.doi.org/10.1039/d2ra06571a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Melhi, Saad
Bedair, Mahmoud A.
Alosaimi, Eid H.
Younes, Ayman A. O.
El-Shwiniy, Walaa H.
Abuelela, Ahmed M.
Effective corrosion inhibition of mild steel in hydrochloric acid by newly synthesized Schiff base nano Co(ii) and Cr(iii) complexes: spectral, thermal, electrochemical and DFT (FMO, NBO) studies
title Effective corrosion inhibition of mild steel in hydrochloric acid by newly synthesized Schiff base nano Co(ii) and Cr(iii) complexes: spectral, thermal, electrochemical and DFT (FMO, NBO) studies
title_full Effective corrosion inhibition of mild steel in hydrochloric acid by newly synthesized Schiff base nano Co(ii) and Cr(iii) complexes: spectral, thermal, electrochemical and DFT (FMO, NBO) studies
title_fullStr Effective corrosion inhibition of mild steel in hydrochloric acid by newly synthesized Schiff base nano Co(ii) and Cr(iii) complexes: spectral, thermal, electrochemical and DFT (FMO, NBO) studies
title_full_unstemmed Effective corrosion inhibition of mild steel in hydrochloric acid by newly synthesized Schiff base nano Co(ii) and Cr(iii) complexes: spectral, thermal, electrochemical and DFT (FMO, NBO) studies
title_short Effective corrosion inhibition of mild steel in hydrochloric acid by newly synthesized Schiff base nano Co(ii) and Cr(iii) complexes: spectral, thermal, electrochemical and DFT (FMO, NBO) studies
title_sort effective corrosion inhibition of mild steel in hydrochloric acid by newly synthesized schiff base nano co(ii) and cr(iii) complexes: spectral, thermal, electrochemical and dft (fmo, nbo) studies
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9661184/
https://www.ncbi.nlm.nih.gov/pubmed/36425733
http://dx.doi.org/10.1039/d2ra06571a
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