Corrosion inhibition of mild steel in 1M HCl by D-glucose derivatives of dihydropyrido [2,3-d:6,5-d′] dipyrimidine-2, 4, 6, 8(1H,3H, 5H,7H)-tetraone

International journal of Scientific Reports, 17p.

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Váldodahkkit: Verma, Chandrabhan Verma, Quraishi, Mumtaz Ahmad, Kluza, Kamil, Makowska-Janusik2, M., Olasunkanmi3, Lukman O., Ebenso, Eno E.
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Almmustuhtton: Nature publishing 2023
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Liŋkkat:https://ir.oauife.edu.ng/123456789/5508
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author Verma, Chandrabhan Verma
Quraishi, Mumtaz Ahmad
Kluza, Kamil
Makowska-Janusik2, M.
Olasunkanmi3, Lukman O.
Ebenso, Eno E.
author_facet Verma, Chandrabhan Verma
Quraishi, Mumtaz Ahmad
Kluza, Kamil
Makowska-Janusik2, M.
Olasunkanmi3, Lukman O.
Ebenso, Eno E.
author_sort Verma, Chandrabhan Verma
collection DSpace
description International journal of Scientific Reports, 17p.
format Journal
id oai:ir.oauife.edu.ng:123456789-5508
institution My University
language English
publishDate 2023
publisher Nature publishing
record_format dspace
spelling oai:ir.oauife.edu.ng:123456789-55082023-05-13T18:07:29Z Corrosion inhibition of mild steel in 1M HCl by D-glucose derivatives of dihydropyrido [2,3-d:6,5-d′] dipyrimidine-2, 4, 6, 8(1H,3H, 5H,7H)-tetraone Verma, Chandrabhan Verma Quraishi, Mumtaz Ahmad Kluza, Kamil Makowska-Janusik2, M. Olasunkanmi3, Lukman O. Ebenso, Eno E. Corrosion inhibition mild steel D-glucose derivatives Langmuir adsorption isotherm dihydropyrido International journal of Scientific Reports, 17p. D-glucose derivatives of dihydropyrido-[2,3-d:6,5-d′]-dipyrimidine-2, 4, 6, 8(1H,3H, 5H,7H)-tetraone (GPHs) have been synthesized and investigated as corrosion inhibitors for mild steel in 1M HCl solution using gravimetric, electrochemical, surface, quantum chemical calculations and Monte Carlo simulations methods. The order of inhibition efficiencies is GPH-3 > GPH-2 > GPH-1. The results further showed that the inhibitor molecules with electron releasing (-OH, -OCH3) substituents exhibit higher efficiency than the parent molecule without any substituents. Polarization study suggests that studied compounds are mixed-type but exhibited predominantly cathodic inhibitive effect. The adsorption of these compounds on mild steel surface obeyed the Langmuir adsorption isotherm. SEM, EDX and AFM analyses were used to confirm the inhibitive actions of the molecules on mild steel surface. Quantum chemical (QC) calculations and Monte Carlo (MC) simulations studies were undertaken to further corroborate the experimental results. 2023-05-13T17:50:53Z 2023-05-13T17:50:53Z 2017-02-07 Journal DOI: 10.1038/srep44432 https://ir.oauife.edu.ng/123456789/5508 en application/pdf Nature publishing
spellingShingle Corrosion inhibition
mild steel
D-glucose derivatives
Langmuir adsorption isotherm
dihydropyrido
Verma, Chandrabhan Verma
Quraishi, Mumtaz Ahmad
Kluza, Kamil
Makowska-Janusik2, M.
Olasunkanmi3, Lukman O.
Ebenso, Eno E.
Corrosion inhibition of mild steel in 1M HCl by D-glucose derivatives of dihydropyrido [2,3-d:6,5-d′] dipyrimidine-2, 4, 6, 8(1H,3H, 5H,7H)-tetraone
title Corrosion inhibition of mild steel in 1M HCl by D-glucose derivatives of dihydropyrido [2,3-d:6,5-d′] dipyrimidine-2, 4, 6, 8(1H,3H, 5H,7H)-tetraone
title_full Corrosion inhibition of mild steel in 1M HCl by D-glucose derivatives of dihydropyrido [2,3-d:6,5-d′] dipyrimidine-2, 4, 6, 8(1H,3H, 5H,7H)-tetraone
title_fullStr Corrosion inhibition of mild steel in 1M HCl by D-glucose derivatives of dihydropyrido [2,3-d:6,5-d′] dipyrimidine-2, 4, 6, 8(1H,3H, 5H,7H)-tetraone
title_full_unstemmed Corrosion inhibition of mild steel in 1M HCl by D-glucose derivatives of dihydropyrido [2,3-d:6,5-d′] dipyrimidine-2, 4, 6, 8(1H,3H, 5H,7H)-tetraone
title_short Corrosion inhibition of mild steel in 1M HCl by D-glucose derivatives of dihydropyrido [2,3-d:6,5-d′] dipyrimidine-2, 4, 6, 8(1H,3H, 5H,7H)-tetraone
title_sort corrosion inhibition of mild steel in 1m hcl by d glucose derivatives of dihydropyrido 2 3 d 6 5 d dipyrimidine 2 4 6 8 1h 3h 5h 7h tetraone
topic Corrosion inhibition
mild steel
D-glucose derivatives
Langmuir adsorption isotherm
dihydropyrido
url https://ir.oauife.edu.ng/123456789/5508
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