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The synergistic corrosion inhibition study of different chain lengths ionic liquids as green inhibitors for X70 steel in acidic medium

TLDR
In this article, three corrosion inhibitors with different anionic carbon chain lengths, 1-vinyl-3methylimidazolium iodide ([VMIM]I), 1-vyl-three-proply-dimitriou-dimethyl iodide (VPIMI) and 1-VBIM]I, were studied on the corrosion of X70 steel in 0.5 mM H2SO4 solution at 298 K.
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This article is published in Materials Chemistry and Physics.The article was published on 2018-08-15. It has received 90 citations till now. The article focuses on the topics: Iodide & Corrosion.

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A combined experimental and theoretical study of green corrosion inhibition of mild steel in HCl solution by aqueous Citrullus lanatus fruit (CLF) extract

TL;DR: The potentiality of Citrullus lanatus fruit (CLF) extract containing several phytochemicals (e.g., citrulline, hesperetin, resveratrol and riboflavin) for mitigating the corrosion of mild steel specimens in subjection to 1 M HCl was assessed from integrated experimental and electronic/atomic level theoretical perspectives as discussed by the authors.
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Ionic liquids as green and sustainable steel corrosion inhibitors: Recent developments

TL;DR: In this paper, a brief outline of recent achievements on ionic liquids as steel corrosion inhibitors is given, and the influence of the ionic liquid composition (i.e. alkyl tail length, the presence of polar and non-polar substituents in cation and anion) as well as its concentration, and also temperature and nature of the medium on the steel anti-corrosion performance is discussed.
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Effect of 1-(3-phenoxypropyl) pyridazin-1-ium bromide on steel corrosion inhibition in acidic medium.

TL;DR: Electrochemical impedance spectroscopy measurements revealed that an increase in the immersion time of steel in an acidic medium decreased the charge transfer resistance (Rct) and thus decreased the inhibition efficiency.
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Electronic/atomic level fundamental theoretical evaluations combined with electrochemical/surface examinations of Tamarindus indiaca aqueous extract as a new green inhibitor for mild steel in acidic solution (HCl 1 M)

TL;DR: In this article, the corrosion retardation potentiality of Tamarindus indiaca extract for mild steel (MS) surface was experimentally (EIS, potentiodynamic polarization, SEM, AFM and contact angle) explored.
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Detailed macro-/micro-scale exploration of the excellent active corrosion inhibition of a novel environmentally friendly green inhibitor for carbon steel in acidic environments

TL;DR: In this paper, an environmentally friendly green inhibitor based on Clove seed aqueous extract was applied for corrosion mitigation of mild steel (MS) surface in 1'M HCl solution.
References
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Corrosion inhibition and adsorption behavior of methionine on mild steel in sulfuric acid and synergistic effect of iodide ion.

TL;DR: The results reveal that MTI inhibited the corrosion reaction by adsorption onto the metal/solution interface, with an optimum [KI]/[MTI] ratio of 5/5, due to stabilization of adsorbed MTI cations as revealed by AFM surface morphological images.
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Experimental and theoretical investigation of organic compounds as inhibitors for mild steel corrosion in sulfuric acid medium

TL;DR: In this article, three synthesized organic compounds were tested as corrosion inhibitors for mild steel in sulfuric acid medium by potentiostatic polarization, FTIR spectroscopy and SEM techniques.
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Enhanced corrosion resistance of mild steel in 1 M HCl solution by trace amount of 2-phenyl-benzothiazole derivatives: Experimental, quantum chemical calculations and molecular dynamics (MD) simulation studies

TL;DR: In this paper, the authors investigated the inhibition performance of 2-(2′-hydroxylphenyl)benzothiazole, (1), 2(2′,5′-dihydroxyphenyl) (2), (2) and (4)-dimethyl-amine, (3) for mild steel in 1-M HCl.
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An investigation of benzimidazole derivative as corrosion inhibitor for mild steel in different concentration HCl solutions

TL;DR: In this paper, the influence of 1,8-bis (1-chlorobenzyl-benzimidazolyl) -octane (CBO) on the corrosion behavior of mild steel in different concentration HCl solutions were studied by weight loss, potentiodynamic polarization, electrochemical impedance spectroscopy (EIS) measurements and SEM observations.
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Experimental and theoretical studies on the corrosion inhibition of copper by two indazole derivatives in 3.0% NaCl solution.

TL;DR: The results obtained from weight loss and electrochemical experiments are in good agreement, and reveal that these compounds are high-efficiency inhibitors with inhibition efficiency order: AIA>IA, which was further confirmed by field emission scanning electronic microscope (FESEM) observation.
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