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Tribological evaluation of environmentally friendly ionic liquids derived from renewable biomaterials

机译:源自可再生生物材料的环保离子液体的摩擦学评估

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Abstract Unlike most of the conventional ionic liquids (ILs) derived from non-renewable resources, five environmentally friendly ILs ([Ch][AA] ILs) derived from amino acids (AAs) and choline (Ch) were synthesized using biomaterials by a simple, green route: acid–base reaction of Ch and AAs. The thermal and corrosion properties, as well as viscosity, of the prepared ILs were examined. The results revealed that the anion structure of ILs plays a dominant role in their thermal and viscosity behavior. These ILs exhibited less corrosion toward copper, related to their halogen-, sulfur-, and phosphorus-free characteristics. The tribological behavior of the synthesized ILs was examined using a Schwingungs Reibung und Verschleiss tester, and the results indicated that these ILs exhibit good friction-reducing and anti-wear properties as lubricants for steel/steel contact. Results from energy-dispersive spectroscopy and X-ray photoelectron spectroscopy indicated that the good tribological properties of [Ch][AA] ILs are related to the formation of a physically adsorbed film on the metal surface during friction.
机译:摘要不同于大多数源自不可再生资源的常规离子液体(IL),使用生物材料通过简单的方法合成了五种源自氨基酸(AAs)和胆碱(Ch)的环境友好型IL([Ch] [AA] ILs)。 ,绿色路线:Ch和AAs的酸碱反应。检查了制备的IL的热和腐蚀性能以及粘度。结果表明,ILs的阴离子结构在其热和粘度行为中起主要作用。这些IL对铜的腐蚀较少,这与它们的无卤素,无硫和无磷特性有关。使用Schwingungs Reibung和Verschleiss测试仪检查了合成IL的摩擦学行为,结果表明这些IL作为钢/钢接触润滑剂表现出良好的减摩和抗磨性能。能量色散光谱法和X射线光电子能谱法的结果表明[Ch] [AA] ILs的良好摩擦学性能与摩擦期间在金属表面形成物理吸附膜有关。

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