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Ionic liquid lubrication: influence of ion structure, surface potential and sliding velocity

机译:离子液体润滑:离子结构,表面电势和滑动速度的影响

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Colloid probe atomic force microscopy (AFM) has been employed to investigate the nanotribology of the ionic liquid (IL)-Au(111) interface. Data is presented for four ILs, 1-ethyl-3-methylimidazolium tris(pentafluoroethyl)trifluorophosphate ([EMIM] FAP), 1-butyl-3-methylimidazolium tris(pentafluoroethyl)-trifluorophosphate ([BMIM] FAP), 1-hexyl-3-methylimidazolium tris(pentafluoroethyl)trifluorophosphate ([HMIM] FAP) and 1-butyl-3-methylimidazolium iodide ([BMIM] I), at different Au(111) surface potentials. Lateral forces vary as a function of applied surface potential and ion structure because the composition of the confined ion layer changes from cation-enriched (at negative potentials) to mixed (at 0 V), and to anion-enriched (at positive potentials). ILs with FAP- anions all exhibit similar nanotribology: low friction at negative potentials and higher friction at positive potentials. [BMIM] I displays the opposite behaviour, as an l~ anion-enriched layer is more lubricating than either the [BMIM]+ or FAP~ layers. The effect of cation charged group (charge-delocalised versus charged-localised) was investigated by comparing [BMIM] FAP with 1-butyl-1-methylpyrrolidinium tris(pentafluoroethyl)trifluorophosphate ([Py^] FAP). [BMIM] FAP is less lubricating at negative potentials, but more lubricating at positive potentials. This indicated that even at positive potentials the cation concentration in the boundary layer is sufficiently high to influence lubricity. The influence of sliding velocity on lateral force was investigated for the [EMIM] FAP-Au(111) system. At neutral potentials the behaviour is consistent with a discontinuous sliding process. When a positive or negative potential bias is applied, this effect is less pronounced as the colloid probe slides along a better defined ion plane.
机译:胶体探针原子力显微镜(AFM)已用于研究离子液体(IL)-Au(111)界面的纳米摩擦学。给出了四个IL的数据,分别是1-乙基-3-甲基咪唑三(五氟乙基)三氟磷酸([EMIM] FAP),1-丁基-3-甲基咪唑三(五氟乙基)-三氟磷酸([BMIM] FAP),1-己基- 3-甲基咪唑三(五氟乙基)三氟磷酸([HMIM] FAP)和1-丁基-3-甲基咪唑碘化物([BMIM] I),在不同的Au(111)表面电势下。横向力随所施加的表面电势和离子结构的变化而变化,因为受约束的离子层的组成从富阳离子(负电)变为混合(在0 V)和富阴离子(在正电)。具有FAP-阴离子的IL均表现出相似的纳米摩擦学:在负电势下低摩擦,在正电势下高摩擦。 [BMIM]我表现出相反的行为,因为富含l〜阴离子的层比[BMIM] +或FAP〜层更润滑。通过比较[BMIM] FAP与1-丁基-1-甲基吡咯烷鎓三(五氟乙基)三氟磷酸酯([Py2] FAP),研究了阳离子带电基团的作用(电荷离域与带电局部)。 [BMIM] FAP在负电位下润滑较少,但在正电位下润滑较多。这表明即使在正电势下,边界层中的阳离子浓度也足够高以影响润滑性。对于[EMIM] FAP-Au(111)系统,研究了滑动速度对侧向力的影响。在中性电位下,行为与不连续的滑动过程一致。当施加正或负电位偏置时,由于胶体探针沿着更好定义的离子平面滑动,这种影响不太明显。

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