Department of Chemistry, Shiraz University, Shiraz, 71946-84795, Iran.
Phys Chem Chem Phys. 2018 Nov 28;20(46):29493-29502. doi: 10.1039/c8cp04500c.
Electrostatic potential in the vicinity of the surface is induced when aqueous mixtures of hydrophobic and hydrophilic ionic liquids (ILs) are confined between a slit nanopore of amorphous but not crystalline TiO2 semiconductors. According to our molecular dynamics (MD) simulations, the extent of ion-pairing lifetime under such nanoscale confinement is substantially lower than its value in the bulk. It becomes still lower when aqueous mixtures of ionic liquid electrolytes are used. Ion-ion correlation is broken completely in the confined dilute aqueous electrolyte systems. The anions and cations of the ILs migrate and accumulate at the opposite amorphous TiO2 electrodes that are separated by 10 nm to arrange a nanosize pore. In contrast, we have shown that the electrostatic interactions between the IL ions are dominant when the electrolyte is confined between anatase (101) TiO2. A similar trend is observed for the inorganic electrolyte system. These findings shed light on the design of new cells for electrochemical applications.
当疏水性和亲水性离子液体(ILs)的水混合物被限制在无定形但非晶态 TiO2 半导体的狭缝纳米孔之间时,会在表面附近产生静电势。根据我们的分子动力学(MD)模拟,在这种纳米尺度限制下的离子对寿命的程度远低于其在本体中的值。当使用离子液体电解质的水混合物时,其值会更低。在受限的稀水电解质体系中,离子-离子相关性被完全破坏。ILs 的阴离子和阳离子在相隔 10nm 的相反无定形 TiO2 电极上迁移和积累,以排列纳米级孔。相比之下,当电解质被限制在锐钛矿(101)TiO2 之间时,我们已经表明 IL 离子之间的静电相互作用占主导地位。对于无机电解质体系也观察到类似的趋势。这些发现为电化学应用的新型电池设计提供了思路。