Lundin Filippa, Hansen Henriette Wase, Adrjanowicz Karolina, Frick Bernhard, Rauber Daniel, Hempelmann Rolf, Shebanova Olga, Niss Kristine, Matic Aleksandar
Department of Physics, Chalmers University of Technology, SE-41296 Göteborg, Sweden.
Glass and Time, IMFUFA, Department of Science and Environment, Roskilde University, P.O. Box 260, DK-4000 Roskilde, Denmark.
J Phys Chem B. 2021 Mar 18;125(10):2719-2728. doi: 10.1021/acs.jpcb.1c00147. Epub 2021 Mar 3.
A detailed understanding of the local dynamics in ionic liquids remains an important aspect in the design of new ionic liquids as advanced functional fluids. Here, we use small-angle X-ray scattering and quasi-elastic neutron spectroscopy to investigate the local structure and dynamics in a model ionic liquid as a function of temperature and pressure, with a particular focus on state points (,) where the macroscopic dynamics, i.e., conductivity, is the same. Our results suggest that the initial step of ion transport is a confined diffusion process, on the nanosecond timescale, where the motion is restricted by a cage of nearest neighbors. This process is invariant considering timescale, geometry, and the participation ratio, at state points of constant conductivity, i.e., state points of isoconductivity. The connection to the nearest-neighbor structure is underlined by the invariance of the peak in the structure factor corresponding to nearest-neighbor correlations. At shorter timescales, picoseconds, two localized relaxation processes of the cation can be observed, which are not directly linked to ion transport. However, these processes also show invariance at isoconductivity. This points to that the overall energy landscape in ionic liquids responds in the same way to density changes and is mainly governed by the nearest-neighbor interactions.
深入了解离子液体中的局部动力学仍是设计新型离子液体作为先进功能流体的一个重要方面。在此,我们使用小角X射线散射和准弹性中子光谱来研究一种模型离子液体中的局部结构和动力学随温度和压力的变化,特别关注宏观动力学(即电导率)相同的状态点(,)。我们的结果表明,离子传输的初始步骤是一个在纳秒时间尺度上的受限扩散过程,其中运动受到最近邻离子构成的笼子的限制。在等电导率的状态点,即电导率恒定的状态点,考虑到时间尺度、几何形状和参与率,这个过程是不变的。与最近邻结构的联系通过对应于最近邻相关性的结构因子中的峰的不变性得到强调。在更短的时间尺度(皮秒)上,可以观察到阳离子的两个局域弛豫过程,它们与离子传输没有直接联系。然而,这些过程在等电导率时也表现出不变性。这表明离子液体中的整体能量景观对密度变化的响应方式相同,并且主要由最近邻相互作用支配。