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In Situ Formed Ionic Liquids in Synthetic Esters for Significantly Improved Lubrication

机译:合成酯中的原位形成的离子液体可显着改善润滑性

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摘要

A novel way of in situ forming ionic liquids (ILs) in synthetic esters is presented. Lithium bis(trifluoromethylsulfonyl)imide (LiTFSI) can form ILs with synthetic esters, [Li(synthetic ester)]TFSI, by the donation of lone pairs on carbonyl oxygen atoms of an ester molecule to a lithium ion to form a weakly Lewis-acidic complex cation [Li (synthetic ester) ]~+ and following interaction with the weakly Lewis-basic anion TFSI~-to generate [Li(synthetic ester)]TFSI. LiTFSI has high solubility in synthetic esters because of the complex formation. The physicochemical and tribological properties of [Li(synthetic ester)]TFSI as lubricant additives were investigated. The easy preparation, extremely good solubility and excellent tribological properties of the type of ILs make them great advantages as compared with conventional ILs that can hardly be used as lubricant additives in synthetic esters due to their low solubility. The lubrication mechanism of these ILs is tentatively discussed.
机译:提出了一种在合成酯中原位形成离子液体(ILs)的新方法。双(三氟甲基磺酰基)酰亚胺锂(LiTFSI)可以通过将酯分子的羰基氧原子上的孤对捐赠给锂离子来形成弱路易斯酸,从而与合成酯[Li(合成酯)] TFSI形成IL。阳离子[Li(合成酯)]〜+,然后与弱路易斯碱性阴离子TFSI〜-相互作用生成[Li(合成酯)] TFSI。 LiTFSI由于形成络合物而在合成酯中具有高溶解度。研究了[Li(合成酯)] TFSI作为润滑剂添加剂的理化性质和摩擦学性能。与传统的ILs相比,ILs易于制备,极佳的溶解度和优异的摩擦学特性使其具有很大的优势,而传统的ILs因其低溶解度而几乎不能用作合成酯的润滑剂添加剂。初步讨论了这些IL的润滑机理。

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