An Rong, Laaksonen Aatto, Wu Muqiu, Zhu Yudan, Shah Faiz Ullah, Lu Xiaohua, Ji Xiaoyan
Herbert Gleiter Institute of Nanoscience, School of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.
Energy Engineering, Division of Energy Science, Luleå University of Technology, 97187 Luleå, Sweden.
Nanoscale. 2022 Aug 11;14(31):11098-11128. doi: 10.1039/d2nr02812c.
Ionic liquids (ILs) are room temperature molten salts that possess preeminent physicochemical properties and have shown great potential in many applications. However, the use of ILs in surface-dependent processes, energy storage, is hindered by the lack of a systematic understanding of the IL interfacial microstructure. ILs on the solid surface display rich ordering, arising from coulombic, van der Waals, solvophobic interactions, , all giving near-surface ILs distinct microstructures. Therefore, it is highly important to clarify the interactions of ILs with solid surfaces at the nanoscale to understand the microstructure and mechanism, providing quantitative structure-property relationships. Atomic force microscopy (AFM) opens a surface-sensitive way to probe the interaction force of ILs with solid surfaces in the layers from sub-nanometers to micrometers. Herein, this review showcases the recent progress of AFM in probing interactions and microstructures of ILs at solid interfaces, and the influence of IL characteristics, surface properties and external stimuli is thereafter discussed. Finally, a summary and perspectives are established, in which, the necessities of the quantification of IL-solid interactions at the molecular level, the development of techniques closely coupled with AFM for probing IL-solid interfaces, and the combination of experiments and simulations are argued.
离子液体(ILs)是室温熔融盐,具有卓越的物理化学性质,并且在许多应用中已显示出巨大潜力。然而,由于缺乏对离子液体界面微观结构的系统理解,离子液体在表面相关过程、能量存储中的应用受到阻碍。固体表面上的离子液体呈现出丰富的有序性,这源于库仑相互作用、范德华相互作用、疏溶剂相互作用等,所有这些都赋予近表面离子液体独特的微观结构。因此,在纳米尺度上阐明离子液体与固体表面之间的相互作用以了解微观结构和机理,提供定量的结构 - 性质关系,是非常重要的。原子力显微镜(AFM)开辟了一种对表面敏感的方法,用于探测从亚纳米到微米层中离子液体与固体表面的相互作用力。在此,本综述展示了原子力显微镜在探测固体界面处离子液体的相互作用和微观结构方面的最新进展,随后讨论了离子液体特性、表面性质和外部刺激的影响。最后,进行了总结并给出了展望,其中论证了在分子水平上量化离子液体与固体相互作用的必要性、开发与原子力显微镜紧密结合用于探测离子液体 - 固体界面的技术以及实验与模拟相结合的必要性。