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离子液体的纳米结构化:对阳离子迁移率的影响。多尺度研究。

Nanostructuration of ionic liquids: impact on the cation mobility. A multi-scale study.

机构信息

Laboratoire Léon Brillouin, CEA, CNRS, Université Paris-Saclay, CEA Saclay, 91191 Gif-sur-Yvette Cedex, France.

ISIS neutron and Muon Facility, Rutherford Appleton Laboratory, Chilton, Didcot OX11 0QX, UK.

出版信息

Nanoscale. 2017 Feb 2;9(5):1901-1908. doi: 10.1039/c6nr07604a.

Abstract

When probed at the macroscopic scale, Ionic Liquids (ILs) behave as highly dissociated (i.e. strong) electrolytes while, at the molecular scale, they show clear characteristics of weak ionic solutions. The multi-scale analysis we report in this paper reconciles these apparently at odds behaviors. We investigate by quasi-elastic neutron scattering (QENS) and neutron spin-echo (NSE), the nanometer/nanosecond dynamics of OMIM-BF, an imidazolium-based IL showing strong nanostructuration. We also probe the same IL on the microscopic (μm and ms) scale by pulsed field gradient NMR. To interpret the neutron data, we introduce a new physical model to account for the dynamics of the side-chains and for the diffusion of the whole molecule. This model describes the observables over the whole and unprecedented investigated spatial ([0.15-1.65] Å) and time ([0.5-2000] ps) ranges. We arrive at a coherent and unified structural/dynamical description of the local cation dynamics: a localized motion within the IL nanometric domains is combined with a genuine long-range translational motion. The QENS, NSE and NMR experiments describe the same long-range translational process, but probed at different scales. The associated diffusion coefficients are more than one order of magnitude different. We show how this apparent discrepancy is a manifestation of the IL nanostructuration.

摘要

当在宏观尺度上探测时,离子液体 (ILs) 表现出高度离解(即强)电解质的行为,而在分子尺度上,它们表现出弱离子溶液的明显特征。我们在本文中报告的多尺度分析调和了这些明显矛盾的行为。我们通过准弹性中子散射 (QENS) 和中子自旋回波 (NSE) 研究了基于咪唑的 IL OMIM-BF 的纳米/纳秒动力学,该 IL 表现出强烈的纳米结构。我们还通过脉冲场梯度 NMR 探测了相同的 IL 在微观 (μm 和 ms) 尺度上的动力学。为了解释中子数据,我们引入了一个新的物理模型来解释侧链的动力学和整个分子的扩散。该模型描述了整个前所未有的空间 ([0.15-1.65] Å) 和时间 ([0.5-2000] ps) 范围内的可观测值。我们得到了局部阳离子动力学的一致和统一的结构/动力学描述:IL 纳米域内的局部运动与真正的远程平移运动相结合。QENS、NSE 和 NMR 实验描述了相同的远程平移过程,但在不同的尺度上进行探测。相关的扩散系数相差一个数量级以上。我们展示了这种明显的差异如何是 IL 纳米结构的表现。

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