Anti-corrosion performance of PANI and POEA coatings applied into 13% Cr stainless steel at 3.5% NaCl solution with neutral pH

The doped PANI and POEA polymers were incorporated into a commercial epoxy resin with xylene solvent to develop effective anticorrosion coatings applied to 13% Cr stainless steel. The produced epoxy resin coatings were systematically characterized by FTIR, XRD, SEM, AFM, and immersion tests. The cor...

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Main Authors: Nacer Mounir, Malha NAZEF, Zakaria BAKA, Hamid YOUSFI
Format: Article
Language:English
Published: Ecole Nationale Polytechnique 2025-07-01
Series:ENP Engineering Science Journal
Subjects:
Online Access:https://enpesj.enp.edu.dz/index.php/enpesj/article/view/296
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author Nacer Mounir
Malha NAZEF
Zakaria BAKA
Hamid YOUSFI
author_facet Nacer Mounir
Malha NAZEF
Zakaria BAKA
Hamid YOUSFI
author_sort Nacer Mounir
collection DOAJ
description The doped PANI and POEA polymers were incorporated into a commercial epoxy resin with xylene solvent to develop effective anticorrosion coatings applied to 13% Cr stainless steel. The produced epoxy resin coatings were systematically characterized by FTIR, XRD, SEM, AFM, and immersion tests. The corrosion resistance performance of the ZP, PANI, and POEA coatings was evaluated through potentiodynamic polarization, electrical impedance spectroscopy, open circuit potential (OCP), and linear polarization resistance (LPR) measurements in a long-term exposure to a 3.5% NaCl solution at pH 6.5. The corrosion resistance of the commercial ZP coating was significantly improved by the PANI and POEA coatings, and their performance was correlated with the highly enhanced protection of the passivation barrier provided. The higher corrosion resistance observed in POEA coatings in acidic ambient conditions is explained by the auxiliary cathodic reaction between the conducting emeraldine PANI and the nonconducting leuco-PANI. The suggested manufacturing method for storage tanks can be used to simultaneously replace the substrate (carbon steel) and the conventional anticorrosion coating based on zinc phosphate.
format Article
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institution Kabale University
issn 2716-912X
2773-4293
language English
publishDate 2025-07-01
publisher Ecole Nationale Polytechnique
record_format Article
series ENP Engineering Science Journal
spelling doaj-art-bd42f65153a54cb3a2fb18878af219822025-08-20T03:58:35ZengEcole Nationale PolytechniqueENP Engineering Science Journal2716-912X2773-42932025-07-0151526010.53907/enpesj.v5i1.296297Anti-corrosion performance of PANI and POEA coatings applied into 13% Cr stainless steel at 3.5% NaCl solution with neutral pHNacer Mounir0Malha NAZEF1Zakaria BAKA2Hamid YOUSFI3Ecole Nationale Polytechnique, Algiers, ALGERIADivision Laboratories (ex CRD) SONATRACH, Boumerdes, ALGERIAEcole Nationale Polytechnique, Algiers, ALGERIAEcole Nationale Polytechnique, Algiers, ALGERIAThe doped PANI and POEA polymers were incorporated into a commercial epoxy resin with xylene solvent to develop effective anticorrosion coatings applied to 13% Cr stainless steel. The produced epoxy resin coatings were systematically characterized by FTIR, XRD, SEM, AFM, and immersion tests. The corrosion resistance performance of the ZP, PANI, and POEA coatings was evaluated through potentiodynamic polarization, electrical impedance spectroscopy, open circuit potential (OCP), and linear polarization resistance (LPR) measurements in a long-term exposure to a 3.5% NaCl solution at pH 6.5. The corrosion resistance of the commercial ZP coating was significantly improved by the PANI and POEA coatings, and their performance was correlated with the highly enhanced protection of the passivation barrier provided. The higher corrosion resistance observed in POEA coatings in acidic ambient conditions is explained by the auxiliary cathodic reaction between the conducting emeraldine PANI and the nonconducting leuco-PANI. The suggested manufacturing method for storage tanks can be used to simultaneously replace the substrate (carbon steel) and the conventional anticorrosion coating based on zinc phosphate.https://enpesj.enp.edu.dz/index.php/enpesj/article/view/296conducting polymerspolyaniline (pani) coatingpoly(o-ethoxaniline) coatingzinc phosphate (zp) coating3.5% nacl solution
spellingShingle Nacer Mounir
Malha NAZEF
Zakaria BAKA
Hamid YOUSFI
Anti-corrosion performance of PANI and POEA coatings applied into 13% Cr stainless steel at 3.5% NaCl solution with neutral pH
ENP Engineering Science Journal
conducting polymers
polyaniline (pani) coating
poly(o-ethoxaniline) coating
zinc phosphate (zp) coating
3.5% nacl solution
title Anti-corrosion performance of PANI and POEA coatings applied into 13% Cr stainless steel at 3.5% NaCl solution with neutral pH
title_full Anti-corrosion performance of PANI and POEA coatings applied into 13% Cr stainless steel at 3.5% NaCl solution with neutral pH
title_fullStr Anti-corrosion performance of PANI and POEA coatings applied into 13% Cr stainless steel at 3.5% NaCl solution with neutral pH
title_full_unstemmed Anti-corrosion performance of PANI and POEA coatings applied into 13% Cr stainless steel at 3.5% NaCl solution with neutral pH
title_short Anti-corrosion performance of PANI and POEA coatings applied into 13% Cr stainless steel at 3.5% NaCl solution with neutral pH
title_sort anti corrosion performance of pani and poea coatings applied into 13 cr stainless steel at 3 5 nacl solution with neutral ph
topic conducting polymers
polyaniline (pani) coating
poly(o-ethoxaniline) coating
zinc phosphate (zp) coating
3.5% nacl solution
url https://enpesj.enp.edu.dz/index.php/enpesj/article/view/296
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