Department of Chemistry, University College London, 20 Gordon Street, London, UK WC1H 0AJ.
Phys Chem Chem Phys. 2010 Feb 14;12(6):1243-7. doi: 10.1039/b920571c. Epub 2009 Dec 8.
We report high-resolution measurements of the forces between two atomically smooth solid surfaces across a film of 1-ethyl-3-methylimidazolium ethylsulfate ionic liquid, for film thickness down to a single ion diameter. For films thinner than approximately 2 nm oscillatory structural forces are observed as the surface separation decreases and pairs of ion layers are squeezed out of the film. Strikingly, measurements of the shear stress of the ionic liquid film reveal low friction coefficients which are 1-2 orders of magnitude smaller than for analogous films of non-polar molecular liquids, including standard hydrocarbon lubricants, up to ca. 1 MPa pressure. We attribute this to the geometric and charge characteristics of the ionic liquid: the irregular shapes of the ions lead to a low shear stress, while the strong coulombic interactions between the ions and the charged confining surfaces lead to a robust film which is maintained between the shearing surfaces when pressure is applied across the film.
我们报告了在厚度低至单个离子直径的 1-乙基-3-甲基咪唑硫酸乙酯离子液体薄膜中,两个原子级光滑固体表面之间的力的高分辨率测量结果。对于厚度小于约 2nm 的薄膜,随着表面分离的减小,观察到了周期性结构力,并且离子层对被挤出薄膜。引人注目的是,对离子液体薄膜的剪切应力的测量结果显示出低摩擦系数,其比类似的非极性分子液体(包括标准碳氢化合物润滑剂)的薄膜低 1-2 个数量级,直至约 1MPa 的压力。我们将这归因于离子液体的几何和电荷特性:离子的不规则形状导致低剪切应力,而离子与带电约束表面之间的强库仑相互作用导致在施加压力穿过薄膜时,在剪切表面之间保持稳定的薄膜。