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Investigation of Sulfonium-Iodide-Based Ionic Liquids to Inhibit Corrosion of API 5L X52 Steel in Different Flow Regimes in Acid Medium

[Image: see text] The present work deals with the corrosion inhibition mechanism of API 5L X52 steel in 1 M H(2)SO(4) employing the ionic liquid (IL) decyl(dimethyl)sulfonium iodide [DDMS(+)I(–)]. Such a mechanism was elicited by the polarization resistance (R(p)), potentiodynamic polarization (PDP)...

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Autores principales: Díaz-Jiménez, Víctor, Arellanes-Lozada, Paulina, Likhanova, Natalya V., Olivares-Xometl, Octavio, Chigo-Anota, Ernesto, Lijanova, Irina V., Gómez-Sánchez, Giselle, Verpoort, F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9713877/
https://www.ncbi.nlm.nih.gov/pubmed/36467960
http://dx.doi.org/10.1021/acsomega.2c05192
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author Díaz-Jiménez, Víctor
Arellanes-Lozada, Paulina
Likhanova, Natalya V.
Olivares-Xometl, Octavio
Chigo-Anota, Ernesto
Lijanova, Irina V.
Gómez-Sánchez, Giselle
Verpoort, F.
author_facet Díaz-Jiménez, Víctor
Arellanes-Lozada, Paulina
Likhanova, Natalya V.
Olivares-Xometl, Octavio
Chigo-Anota, Ernesto
Lijanova, Irina V.
Gómez-Sánchez, Giselle
Verpoort, F.
author_sort Díaz-Jiménez, Víctor
collection PubMed
description [Image: see text] The present work deals with the corrosion inhibition mechanism of API 5L X52 steel in 1 M H(2)SO(4) employing the ionic liquid (IL) decyl(dimethyl)sulfonium iodide [DDMS(+)I(–)]. Such a mechanism was elicited by the polarization resistance (R(p)), potentiodynamic polarization (PDP), and electrochemical impedance spectroscopy (EIS) techniques, both in stationary and dynamic states. The electrochemical results indicated that the corrosion inhibition was controlled by a charge transfer process and that the IL behaved as a mixed-type corrosion inhibitor (CI) with anodic preference. The experimental results revealed maximal inhibition efficiency (IE) rates up to 93% at 150 ppm in the stationary state, whereas in turbulent flow, the IE fell to 65% due to the formation of microvortexes that promoted higher desorption of IL molecules from the surface. The Gibbs free energy of adsorption (ΔG°(ads)) value of −34.89 kJ mol(–1), obtained through the Langmuir isotherm, indicated the formation of an IL monolayer on the metal surface by combining physisorption and chemisorption. The surface analysis techniques confirmed the presence of Fe(x)O(y), FeOOH, and IL on the surface and showed that corrosion damage diminished in the presence of IL. Furthermore, the quantum chemistry calculations (DFT) indicated that the iodide anion hosted most of the highest occupied molecular orbital (HOMO), which eased its adsorption on the anodic sites, preventing the deposition of sulfate ions on the electrode surface.
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spelling pubmed-97138772022-12-02 Investigation of Sulfonium-Iodide-Based Ionic Liquids to Inhibit Corrosion of API 5L X52 Steel in Different Flow Regimes in Acid Medium Díaz-Jiménez, Víctor Arellanes-Lozada, Paulina Likhanova, Natalya V. Olivares-Xometl, Octavio Chigo-Anota, Ernesto Lijanova, Irina V. Gómez-Sánchez, Giselle Verpoort, F. ACS Omega [Image: see text] The present work deals with the corrosion inhibition mechanism of API 5L X52 steel in 1 M H(2)SO(4) employing the ionic liquid (IL) decyl(dimethyl)sulfonium iodide [DDMS(+)I(–)]. Such a mechanism was elicited by the polarization resistance (R(p)), potentiodynamic polarization (PDP), and electrochemical impedance spectroscopy (EIS) techniques, both in stationary and dynamic states. The electrochemical results indicated that the corrosion inhibition was controlled by a charge transfer process and that the IL behaved as a mixed-type corrosion inhibitor (CI) with anodic preference. The experimental results revealed maximal inhibition efficiency (IE) rates up to 93% at 150 ppm in the stationary state, whereas in turbulent flow, the IE fell to 65% due to the formation of microvortexes that promoted higher desorption of IL molecules from the surface. The Gibbs free energy of adsorption (ΔG°(ads)) value of −34.89 kJ mol(–1), obtained through the Langmuir isotherm, indicated the formation of an IL monolayer on the metal surface by combining physisorption and chemisorption. The surface analysis techniques confirmed the presence of Fe(x)O(y), FeOOH, and IL on the surface and showed that corrosion damage diminished in the presence of IL. Furthermore, the quantum chemistry calculations (DFT) indicated that the iodide anion hosted most of the highest occupied molecular orbital (HOMO), which eased its adsorption on the anodic sites, preventing the deposition of sulfate ions on the electrode surface. American Chemical Society 2022-11-15 /pmc/articles/PMC9713877/ /pubmed/36467960 http://dx.doi.org/10.1021/acsomega.2c05192 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Díaz-Jiménez, Víctor
Arellanes-Lozada, Paulina
Likhanova, Natalya V.
Olivares-Xometl, Octavio
Chigo-Anota, Ernesto
Lijanova, Irina V.
Gómez-Sánchez, Giselle
Verpoort, F.
Investigation of Sulfonium-Iodide-Based Ionic Liquids to Inhibit Corrosion of API 5L X52 Steel in Different Flow Regimes in Acid Medium
title Investigation of Sulfonium-Iodide-Based Ionic Liquids to Inhibit Corrosion of API 5L X52 Steel in Different Flow Regimes in Acid Medium
title_full Investigation of Sulfonium-Iodide-Based Ionic Liquids to Inhibit Corrosion of API 5L X52 Steel in Different Flow Regimes in Acid Medium
title_fullStr Investigation of Sulfonium-Iodide-Based Ionic Liquids to Inhibit Corrosion of API 5L X52 Steel in Different Flow Regimes in Acid Medium
title_full_unstemmed Investigation of Sulfonium-Iodide-Based Ionic Liquids to Inhibit Corrosion of API 5L X52 Steel in Different Flow Regimes in Acid Medium
title_short Investigation of Sulfonium-Iodide-Based Ionic Liquids to Inhibit Corrosion of API 5L X52 Steel in Different Flow Regimes in Acid Medium
title_sort investigation of sulfonium-iodide-based ionic liquids to inhibit corrosion of api 5l x52 steel in different flow regimes in acid medium
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9713877/
https://www.ncbi.nlm.nih.gov/pubmed/36467960
http://dx.doi.org/10.1021/acsomega.2c05192
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