Effect of steric hindrance on lubrication and corrosion resistance of oil soluble ionic liquids
In this study, three sterically-hindered quaternary ammonium phosphate ionic liquids (N11116-D.P, N111616-D.P, N88816-D.P) were synthesised, and the effect of the alkyl chain structure of oil soluble ILs on their lubricating and anti-corrosion abilities were investigated. In contrast to conventional...
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Veröffentlicht in: | Tribology international 2023-01, Vol.177, p.107925, Article 107925 |
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Sprache: | eng |
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Zusammenfassung: | In this study, three sterically-hindered quaternary ammonium phosphate ionic liquids (N11116-D.P, N111616-D.P, N88816-D.P) were synthesised, and the effect of the alkyl chain structure of oil soluble ILs on their lubricating and anti-corrosion abilities were investigated. In contrast to conventional ILs, oil soluble ILs exhibit prominent van der Waals interactions owing to the complex structure of the nonpolar alkyl chain, leading to special interfacial adsorption. It was found that when lower steric hindrance was present, the amount of ILs adsorbed increased, resulting in a compacted ad sorption layer with more mass, which facilitated the formation of more antiwear compounds in the tribochemical reaction and a hydrophobic layer that isolated the corrosive environment.
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•Three quaternary ammonium phosphate ionic liquids (N11116-D. P, N111616-D.P, N88816-D.P) were synthesized.•N11116-D.P had the smallest steric hindrance which due to the bettest performance of lubricated.•The lower steric hindrance caused the amount of ILs adsorbed increased.•These ILs has excellent corrosion resistance in lubricating oil and aqueous ethanol. |
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ISSN: | 0301-679X 1879-2464 |
DOI: | 10.1016/j.triboint.2022.107925 |