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通过中子散射和介电谱研究基于离子液体的锂离子电解质中的离子动力学。

Ion Dynamics in Ionic-Liquid-Based Li-Ion Electrolytes Investigated by Neutron Scattering and Dielectric Spectroscopy.

作者信息

Jafta Charl J, Bridges Craig, Haupt Leon, Do Changwoo, Sippel Pit, Cochran Malcolm J, Krohns Stephan, Ohl Michael, Loidl Alois, Mamontov Eugene, Lunkenheimer Peter, Dai Sheng, Sun Xiao-Guang

机构信息

Chemical Science Division, Oak Ridge National Laboratory, Oak Ridge, TN, 37831, USA.

Experimental Physics V, Center for Electronic Correlations and Magnetism, University of Augsburg, 86159, Augsburg, Germany.

出版信息

ChemSusChem. 2018 Oct 11;11(19):3512-3523. doi: 10.1002/cssc.201801321. Epub 2018 Sep 6.

Abstract

A detailed understanding of the diffusion mechanisms of ions in pure and doped ionic liquids remains an important aspect in the design of new ionic-liquid electrolytes for energy storage. To gain more insight into the widely used imidazolium-based ionic liquids, the relationship between viscosity, ionic conductivity, diffusion coefficients, and reorientational dynamics in the ionic liquid 3-methyl-1-methylimidazolium bis(trifluoromethanesulfonyl)imide (DMIM-TFSI) with and without lithium bis(trifluoromethanesulfonyl)imide (Li-TFSI) was examined. The diffusion coefficients for the DMIM cation and the role of ion aggregates were investigated by using the quasielastic neutron scattering (QENS) and neutron spin echo techniques. Two diffusion mechanisms are observed for the DMIM cation with and without Li-TFSI, that is, translational and local. The data additionally suggest that Li ion transport along with ion aggregates, known as the vehicle mechanism, may play a significant role in the ion diffusion process. These dielectric-spectroscopy investigations in a broad temperature and frequency range reveal a typical α-β-relaxation scenario. The α relaxation mirrors the glassy freezing of the dipolar ions, and the β relaxation exhibits the signatures of a Johari-Goldstein relaxation. In contrast to the translational mode detected by neutron scattering, arising from the decoupled faster motion of the DMIM ions, the α relaxation is well coupled to the dc charge transport, that is, the average translational motion of all three ion species in the material. The local diffusion process detected by QENS is only weakly dependent on temperature and viscosity and can be ascribed to the typical fast dynamics of glass-forming liquids.

摘要

深入了解离子在纯离子液体和掺杂离子液体中的扩散机制,仍然是设计用于能量存储的新型离子液体电解质的一个重要方面。为了更深入地了解广泛使用的咪唑基离子液体,研究了在有和没有双(三氟甲磺酰)亚胺锂(Li-TFSI)的情况下,离子液体3-甲基-1-甲基咪唑双(三氟甲磺酰)亚胺(DMIM-TFSI)的粘度、离子电导率、扩散系数和重取向动力学之间的关系。通过准弹性中子散射(QENS)和中子自旋回波技术研究了DMIM阳离子的扩散系数和离子聚集体的作用。对于有和没有Li-TFSI的DMIM阳离子,观察到两种扩散机制,即平移扩散和局域扩散。数据还表明,锂离子与离子聚集体一起传输,即载体机制,可能在离子扩散过程中起重要作用。这些在宽温度和频率范围内的介电谱研究揭示了一种典型的α-β弛豫情况。α弛豫反映了偶极离子的玻璃态冻结,β弛豫表现出乔哈里-戈尔茨坦弛豫的特征。与中子散射检测到的平移模式不同,平移模式源于DMIM离子解耦的更快运动,α弛豫与直流电荷传输紧密耦合,即材料中所有三种离子物种的平均平移运动。QENS检测到的局域扩散过程仅微弱地依赖于温度和粘度,可归因于玻璃形成液体的典型快速动力学。

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