首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Competitive Adsorption of Lubricant Base Oil and Ionic Liquid Additives at Air/Liquid and Solid/Liquid Interfaces
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Competitive Adsorption of Lubricant Base Oil and Ionic Liquid Additives at Air/Liquid and Solid/Liquid Interfaces

机译:空气/液体和固体/液体界面在空气/液体和固体/液体界面上的竞争性吸附润滑剂基础油和离子液体添加剂

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摘要

Oil-soluble ionic liquids (ILs) have been proved as effective additives in lubricant oils through tribological experiments and post-test analytical analyses. In this study, surface structures of lubricant base oil, oil-soluble ILs, and their mixtures at the air/liquid and solid/liquid interfaces have been studied using sum frequency generation (SFG) vibrational spectroscopy. At the air/base oil and air/IL interfaces, the alkyl chains of the studied compounds were shown to be conformationally disordered and their terminal methyl groups point outward at the liquid surface. The base oil dominates the air/(base oil + IL) interface due to its higher surface excess propensity and larger bulk concentration. At the solid (silica) surface, ILs adopt a structure with their charged headgroups in contact with the silica surface, while their alkyl chains are more conformationally ordered or packed compared to the air/IL interface. At the interface between silica and (base oil + IL) mixtures, ILs also preferentially adsorb to the silica surface with their layer structures somewhat different from those of ILs alone. These results showed that ILs can adsorb onto the solid surface even before tribological contacts are made. The insights obtained from this SFG study provide a better understanding of the role of ionic liquids in lubrication.
机译:通过摩擦学实验和试验后分析分析,已被证明是石油溶性离子液体(ILS)作为润滑油的有效添加剂。在该研究中,使用SUM频率产生(SFG)振动光谱学研究了润滑剂基础油,油溶性ILS的表面结构及其在空气/液体和固体/液体界面的混合物。在空气/基础油和空气/ IL界面处,所研究的化合物的烷基链被显示为一致性混乱,并且它们的末端甲基在液体表面处向外。由于其较高的表面过量倾向和较大的体积浓度,基础油负极于空气/(基础油+ IL)界面。在固体(二氧化硅)表面上,ILS采用与二氧化硅表面接触的带电荷的头组,而与空气/ IL界面相比,它们的烷基链更加综合排列或包装。在二氧化硅和(基础油+ IL)混合物之间的界面处,ILS还优先吸附到二氧化硅表面,其层结构稍微不同于ILS的结构。这些结果表明,即使在制造摩擦学触点之前,IL也可以吸附到固体表面上。从该SFG研究中获得的见解提供了更好地理解离子液体在润滑中的作用。

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