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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >NMR Relaxation and Self-Diffusion Study at High and Low Magnetic Fields of Ionic Association in Protic Ionic Liquids
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NMR Relaxation and Self-Diffusion Study at High and Low Magnetic Fields of Ionic Association in Protic Ionic Liquids

机译:质子离子液体中离子缔合的高低磁场下的NMR弛豫和自扩散研究

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摘要

NMR relaxation and diffusion characterization of several protic ionic liquids at high and low magnetic fields are reported. The dynamics of cations and anions were similar at both frequencies, with similar trends and magnitudes for a fixed component paired with oppositely charged species. An Arrhenius relationship was displayed between the molecular motion and the glass transition temperature. The diffusion of ions showed a strong degree of ion correlation between cation and anion, and Arrhenius plots of relaxation and diffusion indicated that the ions diffused as a pair. At high field diffusion was dominated by mobile species that followed Stokes-Einstein behavior. Conversely, diffusion observed at low field emphasized relatively immobile species that displayed fractional Stokes-Einstein behavior. No evidence was found to indicate the influence of magnetic field on structural and dynamic properties of the studied ILs; however, variation between diffusion coefficients at different magnetic fields indicated dynamic heterogeneities (or temporal aggregates) within the ionic liquid.
机译:报道了在高和低磁场下几种质子离子液体的NMR弛豫和扩散特性。阳离子和阴离子的动力学在两个频率上都相似,固定组分与带相反电荷的物质配对时具有相似的趋势和幅度。在分子运动和玻璃化转变温度之间显示出阿累尼乌斯关系。离子的扩散显示出阳离子和阴离子之间的离子相关程度很强,而Arrhenius曲线的弛豫和扩散表明离子成对扩散。在高场下,扩散遵循着斯托克斯-爱因斯坦行为。相反,在低场观察到的扩散则强调了相对固定的物种,它们表现出分数的斯托克斯-爱因斯坦行为。没有证据表明磁场对所研究的IL的结构和动力学性质的影响。然而,在不同磁场下扩散系数之间的变化表明离子液体中存在动态异质性(或时间聚集)。

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