Effect of Alkyl Chain Length of Quaternary Ammonium Surfactant Corrosion Inhibitor on Fe (110) in Acetic Acid Media via Computer Simulation

Density functional theory (DFT) and molecular dynamics (MD) simulations were employed to investigate the inhibition mechanism of cationic quaternary ammonium surfactant corrosion inhibitors (CIs) with varying chain lengths in 1.0 M HCl and 500 ppm acetic acid on Fe (110) surfaces. DFT calculations d...

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發表在:CHEMENGINEERING
Main Authors: Numin, Mohd Sofi; Jumbri, Khairulazhar; Eng, Kee Kok; Hassan, Almila; Borhan, Noorazlenawati; Daud, Nik M. Radi Nik M.; Nor, A. Azmi M.; Suhor, Firdaus; Dzulkifli, Nur Nadia
格式: Article
語言:English
出版: MDPI 2025
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在線閱讀:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001429670900001
author Numin
Mohd Sofi; Jumbri
Khairulazhar; Eng
Kee Kok; Hassan
Almila; Borhan
Noorazlenawati; Daud
Nik M. Radi Nik M.; Nor
A. Azmi M.; Suhor
Firdaus; Dzulkifli
Nur Nadia
spellingShingle Numin
Mohd Sofi; Jumbri
Khairulazhar; Eng
Kee Kok; Hassan
Almila; Borhan
Noorazlenawati; Daud
Nik M. Radi Nik M.; Nor
A. Azmi M.; Suhor
Firdaus; Dzulkifli
Nur Nadia
Effect of Alkyl Chain Length of Quaternary Ammonium Surfactant Corrosion Inhibitor on Fe (110) in Acetic Acid Media via Computer Simulation
Engineering
author_facet Numin
Mohd Sofi; Jumbri
Khairulazhar; Eng
Kee Kok; Hassan
Almila; Borhan
Noorazlenawati; Daud
Nik M. Radi Nik M.; Nor
A. Azmi M.; Suhor
Firdaus; Dzulkifli
Nur Nadia
author_sort Numin
spelling Numin, Mohd Sofi; Jumbri, Khairulazhar; Eng, Kee Kok; Hassan, Almila; Borhan, Noorazlenawati; Daud, Nik M. Radi Nik M.; Nor, A. Azmi M.; Suhor, Firdaus; Dzulkifli, Nur Nadia
Effect of Alkyl Chain Length of Quaternary Ammonium Surfactant Corrosion Inhibitor on Fe (110) in Acetic Acid Media via Computer Simulation
CHEMENGINEERING
English
Article
Density functional theory (DFT) and molecular dynamics (MD) simulations were employed to investigate the inhibition mechanism of cationic quaternary ammonium surfactant corrosion inhibitors (CIs) with varying chain lengths in 1.0 M HCl and 500 ppm acetic acid on Fe (110) surfaces. DFT calculations demonstrated that all surfactant CI molecules possess favorable inhibition properties, with the cationic quaternary ammonium groups (N+) and alpha carbon serving as electron-donating reactive centers, characterized by a low band-gap energy of 1.26 eV. MD simulations highlighted C12, with a 12-alkyl chain length, as the most promising CI molecule, exhibiting high adsorption and binding energies, a low diffusion coefficient, and a random distribution at low concentrations, thereby facilitating optimal adsorption onto the Fe (110) metal surface. The insights gained from computational modeling regarding the influence of alkyl chain length on inhibition efficiency, coupled with the comprehensive theoretical understanding of cationic quaternary ammonium surfactant CI molecules in acidic corrosion systems, can serve as a foundation for the future development of innovative surfactant CI molecules incorporating ammonium-based functional groups.
MDPI

2305-7084
2025
9
1
10.3390/chemengineering9010007
Engineering
gold
WOS:001429670900001
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001429670900001
title Effect of Alkyl Chain Length of Quaternary Ammonium Surfactant Corrosion Inhibitor on Fe (110) in Acetic Acid Media via Computer Simulation
title_short Effect of Alkyl Chain Length of Quaternary Ammonium Surfactant Corrosion Inhibitor on Fe (110) in Acetic Acid Media via Computer Simulation
title_full Effect of Alkyl Chain Length of Quaternary Ammonium Surfactant Corrosion Inhibitor on Fe (110) in Acetic Acid Media via Computer Simulation
title_fullStr Effect of Alkyl Chain Length of Quaternary Ammonium Surfactant Corrosion Inhibitor on Fe (110) in Acetic Acid Media via Computer Simulation
title_full_unstemmed Effect of Alkyl Chain Length of Quaternary Ammonium Surfactant Corrosion Inhibitor on Fe (110) in Acetic Acid Media via Computer Simulation
title_sort Effect of Alkyl Chain Length of Quaternary Ammonium Surfactant Corrosion Inhibitor on Fe (110) in Acetic Acid Media via Computer Simulation
container_title CHEMENGINEERING
language English
format Article
description Density functional theory (DFT) and molecular dynamics (MD) simulations were employed to investigate the inhibition mechanism of cationic quaternary ammonium surfactant corrosion inhibitors (CIs) with varying chain lengths in 1.0 M HCl and 500 ppm acetic acid on Fe (110) surfaces. DFT calculations demonstrated that all surfactant CI molecules possess favorable inhibition properties, with the cationic quaternary ammonium groups (N+) and alpha carbon serving as electron-donating reactive centers, characterized by a low band-gap energy of 1.26 eV. MD simulations highlighted C12, with a 12-alkyl chain length, as the most promising CI molecule, exhibiting high adsorption and binding energies, a low diffusion coefficient, and a random distribution at low concentrations, thereby facilitating optimal adsorption onto the Fe (110) metal surface. The insights gained from computational modeling regarding the influence of alkyl chain length on inhibition efficiency, coupled with the comprehensive theoretical understanding of cationic quaternary ammonium surfactant CI molecules in acidic corrosion systems, can serve as a foundation for the future development of innovative surfactant CI molecules incorporating ammonium-based functional groups.
publisher MDPI
issn
2305-7084
publishDate 2025
container_volume 9
container_issue 1
doi_str_mv 10.3390/chemengineering9010007
topic Engineering
topic_facet Engineering
accesstype gold
id WOS:001429670900001
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001429670900001
record_format wos
collection Web of Science (WoS)
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