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Functional Pyromellitic Diimide as a Corrosion Inhibitor for Galvanized Steel: An Atomic-Scale Engineering

[Image: see text] Corrosion of metal/steel is a major concern in terms of safety, durability, cost, and environment. We have studied a cost-effective, nontoxic, and environmentally friendly pyromellitic diimide (PMDI) compound as a corrosion inhibitor for galvanized steel through density functional...

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Autores principales: Kushwaha, Anoop Kumar, Sahoo, Mihir Ranjan, Ray, Mausumi, Das, Debashish, Nayak, Suryakanta, Maity, Apurba, Sarkar, Kuntal, Bhagat, Amar Nath, Pal, Atanu Ranjan, Rout, Tapan Kumar, Nayak, Saroj Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9366774/
https://www.ncbi.nlm.nih.gov/pubmed/35967049
http://dx.doi.org/10.1021/acsomega.2c01299
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author Kushwaha, Anoop Kumar
Sahoo, Mihir Ranjan
Ray, Mausumi
Das, Debashish
Nayak, Suryakanta
Maity, Apurba
Sarkar, Kuntal
Bhagat, Amar Nath
Pal, Atanu Ranjan
Rout, Tapan Kumar
Nayak, Saroj Kumar
author_facet Kushwaha, Anoop Kumar
Sahoo, Mihir Ranjan
Ray, Mausumi
Das, Debashish
Nayak, Suryakanta
Maity, Apurba
Sarkar, Kuntal
Bhagat, Amar Nath
Pal, Atanu Ranjan
Rout, Tapan Kumar
Nayak, Saroj Kumar
author_sort Kushwaha, Anoop Kumar
collection PubMed
description [Image: see text] Corrosion of metal/steel is a major concern in terms of safety, durability, cost, and environment. We have studied a cost-effective, nontoxic, and environmentally friendly pyromellitic diimide (PMDI) compound as a corrosion inhibitor for galvanized steel through density functional theory. An atomic-scale engineering through the functionalization of PMDI is performed to showcase the enhancement in corrosion inhibition and strengthen the interaction between functionalized PMDI (F-PMDI) and zinc oxide (naturally existing on galvanized steel). PMDI is functionalized with methyl/diamine groups (inh1 (R = −CH(3), R′ = −CH(3)), inh2 (R = −CH(3), R′ = −CH(2)CH(2)NH(2)), and inh3 (R = −C(6)H(3)(NH(2))(2), R′ = −CH(2)CH(2)NH(2)). The corrosion inhibition parameters (e.g., orbital energies, electronegativity, dipole moment, global hardness, and electron transfer) indicate the superior corrosion inhibition performance of inh3 (inh3 > inh2 > inh1). Inh3 (∼182.38 kJ/mol) strongly interacts with ZnO(101̅0) compared to inh2 (∼122.56 kJ/mol) and inh1 (∼119.66 kJ/mol). The superior performance of inh3 has been probed through charge density and density of states. Larger available states of N and H (of inh3) interact strongly with Zn and O(surf) (of the surface), respectively, creating N–Zn and H–O(surf) bonds. Interestingly, these bonds only appear in inh3. The charge accumulation on O(surf), and depletion on H(s), further strengthens the bonding between inh3 and ZnO(101̅0). The microscopic understanding obtained in this study will be useful to develop low-cost and efficient corrosion inhibitors for galvanized steel.
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spelling pubmed-93667742022-08-12 Functional Pyromellitic Diimide as a Corrosion Inhibitor for Galvanized Steel: An Atomic-Scale Engineering Kushwaha, Anoop Kumar Sahoo, Mihir Ranjan Ray, Mausumi Das, Debashish Nayak, Suryakanta Maity, Apurba Sarkar, Kuntal Bhagat, Amar Nath Pal, Atanu Ranjan Rout, Tapan Kumar Nayak, Saroj Kumar ACS Omega [Image: see text] Corrosion of metal/steel is a major concern in terms of safety, durability, cost, and environment. We have studied a cost-effective, nontoxic, and environmentally friendly pyromellitic diimide (PMDI) compound as a corrosion inhibitor for galvanized steel through density functional theory. An atomic-scale engineering through the functionalization of PMDI is performed to showcase the enhancement in corrosion inhibition and strengthen the interaction between functionalized PMDI (F-PMDI) and zinc oxide (naturally existing on galvanized steel). PMDI is functionalized with methyl/diamine groups (inh1 (R = −CH(3), R′ = −CH(3)), inh2 (R = −CH(3), R′ = −CH(2)CH(2)NH(2)), and inh3 (R = −C(6)H(3)(NH(2))(2), R′ = −CH(2)CH(2)NH(2)). The corrosion inhibition parameters (e.g., orbital energies, electronegativity, dipole moment, global hardness, and electron transfer) indicate the superior corrosion inhibition performance of inh3 (inh3 > inh2 > inh1). Inh3 (∼182.38 kJ/mol) strongly interacts with ZnO(101̅0) compared to inh2 (∼122.56 kJ/mol) and inh1 (∼119.66 kJ/mol). The superior performance of inh3 has been probed through charge density and density of states. Larger available states of N and H (of inh3) interact strongly with Zn and O(surf) (of the surface), respectively, creating N–Zn and H–O(surf) bonds. Interestingly, these bonds only appear in inh3. The charge accumulation on O(surf), and depletion on H(s), further strengthens the bonding between inh3 and ZnO(101̅0). The microscopic understanding obtained in this study will be useful to develop low-cost and efficient corrosion inhibitors for galvanized steel. American Chemical Society 2022-08-01 /pmc/articles/PMC9366774/ /pubmed/35967049 http://dx.doi.org/10.1021/acsomega.2c01299 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 Kushwaha, Anoop Kumar
Sahoo, Mihir Ranjan
Ray, Mausumi
Das, Debashish
Nayak, Suryakanta
Maity, Apurba
Sarkar, Kuntal
Bhagat, Amar Nath
Pal, Atanu Ranjan
Rout, Tapan Kumar
Nayak, Saroj Kumar
Functional Pyromellitic Diimide as a Corrosion Inhibitor for Galvanized Steel: An Atomic-Scale Engineering
title Functional Pyromellitic Diimide as a Corrosion Inhibitor for Galvanized Steel: An Atomic-Scale Engineering
title_full Functional Pyromellitic Diimide as a Corrosion Inhibitor for Galvanized Steel: An Atomic-Scale Engineering
title_fullStr Functional Pyromellitic Diimide as a Corrosion Inhibitor for Galvanized Steel: An Atomic-Scale Engineering
title_full_unstemmed Functional Pyromellitic Diimide as a Corrosion Inhibitor for Galvanized Steel: An Atomic-Scale Engineering
title_short Functional Pyromellitic Diimide as a Corrosion Inhibitor for Galvanized Steel: An Atomic-Scale Engineering
title_sort functional pyromellitic diimide as a corrosion inhibitor for galvanized steel: an atomic-scale engineering
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9366774/
https://www.ncbi.nlm.nih.gov/pubmed/35967049
http://dx.doi.org/10.1021/acsomega.2c01299
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