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Corrosion protection performance of silicon-based coatings on carbon steel in NaCl solution: a theoretical and experimental assessment of the effect of plasma-enhanced chemical vapor deposition pretreatment

Using a plasma-assisted chemical vapor deposition (PACVD) process, carbon steel samples were coated with an organosilicon layer less than 2.5 microns thick. Ellipsometry, Fourier transform infrared (FTIR) spectroscopy, contact angle, scanning electron microscopy (SEM), and atomic force microscopy (A...

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Autores principales: Delimi, Amel, Ferkous, Hana, Alam, Manawwer, Djellali, Souad, Sedik, Amel, Abdesalem, Kahlouche, Boulechfar, Chérifa, Belakhdar, Amina, Yadav, Krishna Kumar, Cabral-Pinto, Marina M. S., Jeon, Byong-Hun, Benguerba, Yacine
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/PMC9131146/
https://www.ncbi.nlm.nih.gov/pubmed/35685172
http://dx.doi.org/10.1039/d1ra08848c
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author Delimi, Amel
Ferkous, Hana
Alam, Manawwer
Djellali, Souad
Sedik, Amel
Abdesalem, Kahlouche
Boulechfar, Chérifa
Belakhdar, Amina
Yadav, Krishna Kumar
Cabral-Pinto, Marina M. S.
Jeon, Byong-Hun
Benguerba, Yacine
author_facet Delimi, Amel
Ferkous, Hana
Alam, Manawwer
Djellali, Souad
Sedik, Amel
Abdesalem, Kahlouche
Boulechfar, Chérifa
Belakhdar, Amina
Yadav, Krishna Kumar
Cabral-Pinto, Marina M. S.
Jeon, Byong-Hun
Benguerba, Yacine
author_sort Delimi, Amel
collection PubMed
description Using a plasma-assisted chemical vapor deposition (PACVD) process, carbon steel samples were coated with an organosilicon layer less than 2.5 microns thick. Ellipsometry, Fourier transform infrared (FTIR) spectroscopy, contact angle, scanning electron microscopy (SEM), and atomic force microscopy (AFM) were used to analyze the films. Additionally, gravimetric experiments were used to determine the electrochemical properties of the organosilicon coatings. Organosilicon-coated carbon steel specimens demonstrated significantly enhanced resistance to corrosive conditions, such as 3% aqueous sodium chloride solutions. The surface preparation method has a considerable influence on the morphological and electrochemical properties of the steel. Argon pretreatment significantly enhances the corrosion resistance of organosilicon-coated steel. Gravimetric research demonstrated that pretreatment with argon plasma resulted in less weight loss and corrosion than pretreatment with nitrogen plasma. The link between quantum computing and experimental data using density functional theory (DFT) and molecular dynamics (MD) was used.
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spelling pubmed-91311462022-06-08 Corrosion protection performance of silicon-based coatings on carbon steel in NaCl solution: a theoretical and experimental assessment of the effect of plasma-enhanced chemical vapor deposition pretreatment Delimi, Amel Ferkous, Hana Alam, Manawwer Djellali, Souad Sedik, Amel Abdesalem, Kahlouche Boulechfar, Chérifa Belakhdar, Amina Yadav, Krishna Kumar Cabral-Pinto, Marina M. S. Jeon, Byong-Hun Benguerba, Yacine RSC Adv Chemistry Using a plasma-assisted chemical vapor deposition (PACVD) process, carbon steel samples were coated with an organosilicon layer less than 2.5 microns thick. Ellipsometry, Fourier transform infrared (FTIR) spectroscopy, contact angle, scanning electron microscopy (SEM), and atomic force microscopy (AFM) were used to analyze the films. Additionally, gravimetric experiments were used to determine the electrochemical properties of the organosilicon coatings. Organosilicon-coated carbon steel specimens demonstrated significantly enhanced resistance to corrosive conditions, such as 3% aqueous sodium chloride solutions. The surface preparation method has a considerable influence on the morphological and electrochemical properties of the steel. Argon pretreatment significantly enhances the corrosion resistance of organosilicon-coated steel. Gravimetric research demonstrated that pretreatment with argon plasma resulted in less weight loss and corrosion than pretreatment with nitrogen plasma. The link between quantum computing and experimental data using density functional theory (DFT) and molecular dynamics (MD) was used. The Royal Society of Chemistry 2022-05-25 /pmc/articles/PMC9131146/ /pubmed/35685172 http://dx.doi.org/10.1039/d1ra08848c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Delimi, Amel
Ferkous, Hana
Alam, Manawwer
Djellali, Souad
Sedik, Amel
Abdesalem, Kahlouche
Boulechfar, Chérifa
Belakhdar, Amina
Yadav, Krishna Kumar
Cabral-Pinto, Marina M. S.
Jeon, Byong-Hun
Benguerba, Yacine
Corrosion protection performance of silicon-based coatings on carbon steel in NaCl solution: a theoretical and experimental assessment of the effect of plasma-enhanced chemical vapor deposition pretreatment
title Corrosion protection performance of silicon-based coatings on carbon steel in NaCl solution: a theoretical and experimental assessment of the effect of plasma-enhanced chemical vapor deposition pretreatment
title_full Corrosion protection performance of silicon-based coatings on carbon steel in NaCl solution: a theoretical and experimental assessment of the effect of plasma-enhanced chemical vapor deposition pretreatment
title_fullStr Corrosion protection performance of silicon-based coatings on carbon steel in NaCl solution: a theoretical and experimental assessment of the effect of plasma-enhanced chemical vapor deposition pretreatment
title_full_unstemmed Corrosion protection performance of silicon-based coatings on carbon steel in NaCl solution: a theoretical and experimental assessment of the effect of plasma-enhanced chemical vapor deposition pretreatment
title_short Corrosion protection performance of silicon-based coatings on carbon steel in NaCl solution: a theoretical and experimental assessment of the effect of plasma-enhanced chemical vapor deposition pretreatment
title_sort corrosion protection performance of silicon-based coatings on carbon steel in nacl solution: a theoretical and experimental assessment of the effect of plasma-enhanced chemical vapor deposition pretreatment
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9131146/
https://www.ncbi.nlm.nih.gov/pubmed/35685172
http://dx.doi.org/10.1039/d1ra08848c
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