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Expired Antifungal Drugs as Effective Corrosion Inhibitors for Carbon Steel in 1 M HCl Solution: Practical and Theoretical Approaches

[Image: see text] The anticorrosion potency of two expired antifungal drugs, namely, bifonazole (BIF) and terconazole (TER), for X65 carbon steel (X65CS) in a 1.0 M HCl solution was estimated using practical and computational measurements. The results of all methods applied showed that the percentag...

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Autores principales: Abdallah, Metwally, Soliman, Kamal A., Alfakeer, Majda, Hawsawi, Hanaa, Al-bonayan, Ameena Mohsen, Al-Juaid, Salih S., Abd El Wanees, Salah, Motawea, Mohamed S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10536085/
https://www.ncbi.nlm.nih.gov/pubmed/37779933
http://dx.doi.org/10.1021/acsomega.3c03257
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author Abdallah, Metwally
Soliman, Kamal A.
Alfakeer, Majda
Hawsawi, Hanaa
Al-bonayan, Ameena Mohsen
Al-Juaid, Salih S.
Abd El Wanees, Salah
Motawea, Mohamed S.
author_facet Abdallah, Metwally
Soliman, Kamal A.
Alfakeer, Majda
Hawsawi, Hanaa
Al-bonayan, Ameena Mohsen
Al-Juaid, Salih S.
Abd El Wanees, Salah
Motawea, Mohamed S.
author_sort Abdallah, Metwally
collection PubMed
description [Image: see text] The anticorrosion potency of two expired antifungal drugs, namely, bifonazole (BIF) and terconazole (TER), for X65 carbon steel (X65CS) in a 1.0 M HCl solution was estimated using practical and computational measurements. The results of all methods applied showed that the percentage of anticorrosive efficacy (% AE) increased for expired BIF and TER and reduced at elevated temperatures. The % AE values of expired BIF and TER (375 mg L(–1)) reached 92.08 and 94.19%, respectively, using polarization methods. The anticorrosion activities of the two expired drugs were interpreted based on their adsorption on the X65CS surface. The adsorption occurred according to the Langmuir isotherm model. The polarization results indicated that the expired drugs BIF and TER were mixed inhibitors. The impedance results showed a single capacitive loop, confirming that the charge transfer process controlled the corrosion of X65CS. Expired BIF and TER served as good pitting inhibitors by shifting the pitting potential to positive values. The thermodynamic functions of activation and adsorption were defined and explained. Density functional theory and Monte Carlo simulations were used to investigate the BIF and TER inhibitors. The theoretical parameters were consistent with the experimental results. The anticorrosion efficiencies determined using the various methods were in complete agreement.
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spelling pubmed-105360852023-09-29 Expired Antifungal Drugs as Effective Corrosion Inhibitors for Carbon Steel in 1 M HCl Solution: Practical and Theoretical Approaches Abdallah, Metwally Soliman, Kamal A. Alfakeer, Majda Hawsawi, Hanaa Al-bonayan, Ameena Mohsen Al-Juaid, Salih S. Abd El Wanees, Salah Motawea, Mohamed S. ACS Omega [Image: see text] The anticorrosion potency of two expired antifungal drugs, namely, bifonazole (BIF) and terconazole (TER), for X65 carbon steel (X65CS) in a 1.0 M HCl solution was estimated using practical and computational measurements. The results of all methods applied showed that the percentage of anticorrosive efficacy (% AE) increased for expired BIF and TER and reduced at elevated temperatures. The % AE values of expired BIF and TER (375 mg L(–1)) reached 92.08 and 94.19%, respectively, using polarization methods. The anticorrosion activities of the two expired drugs were interpreted based on their adsorption on the X65CS surface. The adsorption occurred according to the Langmuir isotherm model. The polarization results indicated that the expired drugs BIF and TER were mixed inhibitors. The impedance results showed a single capacitive loop, confirming that the charge transfer process controlled the corrosion of X65CS. Expired BIF and TER served as good pitting inhibitors by shifting the pitting potential to positive values. The thermodynamic functions of activation and adsorption were defined and explained. Density functional theory and Monte Carlo simulations were used to investigate the BIF and TER inhibitors. The theoretical parameters were consistent with the experimental results. The anticorrosion efficiencies determined using the various methods were in complete agreement. American Chemical Society 2023-09-15 /pmc/articles/PMC10536085/ /pubmed/37779933 http://dx.doi.org/10.1021/acsomega.3c03257 Text en © 2023 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 Abdallah, Metwally
Soliman, Kamal A.
Alfakeer, Majda
Hawsawi, Hanaa
Al-bonayan, Ameena Mohsen
Al-Juaid, Salih S.
Abd El Wanees, Salah
Motawea, Mohamed S.
Expired Antifungal Drugs as Effective Corrosion Inhibitors for Carbon Steel in 1 M HCl Solution: Practical and Theoretical Approaches
title Expired Antifungal Drugs as Effective Corrosion Inhibitors for Carbon Steel in 1 M HCl Solution: Practical and Theoretical Approaches
title_full Expired Antifungal Drugs as Effective Corrosion Inhibitors for Carbon Steel in 1 M HCl Solution: Practical and Theoretical Approaches
title_fullStr Expired Antifungal Drugs as Effective Corrosion Inhibitors for Carbon Steel in 1 M HCl Solution: Practical and Theoretical Approaches
title_full_unstemmed Expired Antifungal Drugs as Effective Corrosion Inhibitors for Carbon Steel in 1 M HCl Solution: Practical and Theoretical Approaches
title_short Expired Antifungal Drugs as Effective Corrosion Inhibitors for Carbon Steel in 1 M HCl Solution: Practical and Theoretical Approaches
title_sort expired antifungal drugs as effective corrosion inhibitors for carbon steel in 1 m hcl solution: practical and theoretical approaches
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10536085/
https://www.ncbi.nlm.nih.gov/pubmed/37779933
http://dx.doi.org/10.1021/acsomega.3c03257
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