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通过氢和氟核磁共振研究1-乙基-3-甲基咪唑三氟甲磺酸盐离子液体的分子动力学。

Molecular dynamics of 1-ethyl-3-methylimidazolium triflate ionic liquid studied by H and F nuclear magnetic resonances.

作者信息

Wencka Magdalena, Apih Tomaž, Korošec Romana Cerc, Jenczyk Jacek, Jarek Marcin, Szutkowski Kosma, Jurga Stefan, Dolinšek Janez

机构信息

Institute of Molecular Physics, Polish Academy of Sciences, ul. Smoluchowskiego 17, PL-60-179 Poznan, Poland.

出版信息

Phys Chem Chem Phys. 2017 Jun 14;19(23):15368-15376. doi: 10.1039/c7cp01045a.

DOI:10.1039/c7cp01045a
PMID:28574565
Abstract

The molecular dynamics of an ionic liquid (IL) composed of a 1-ethyl-3-methylimidazolium cation and a triflate (trifluoromethanesulfonate) anion, abbreviated as [Emim][TfO], were studied by NMR spectroscopy. By measuring the temperature-dependent high-field 1H and F spin-lattice relaxation (SLR) rates, the frequency-dependent H and F SLR dispersion curves using fast-field-cycling relaxometry, and the temperature-dependent 1H and F diffusion constants, and by utilizing the fact that the primary NMR-active nucleus on the Emim cation is H, whereas on the TfO anion it is F, the cationic and anionic dynamics were studied separately. A single theoretical relaxation model successfully reproduced all the experimental data of both types of resonant nuclei by fitting all the data simultaneously with the same set of fit parameters. Upon cooling, [Emim][TfO] exhibited a supercooled liquid phase between T = 256 K and the crystallization temperature T ≈ 227-222 K, as confirmed by differential scanning calorimetry (DSC) experiments. Theoretical analysis revealed that within the liquid and the supercooled liquid states of [Emim][TfO], the H and F relaxation rates are affected by both the rotational and translational diffusional processes with no discontinuous change at T. While the rotational diffusion is well described as an Arrhenius thermally activated process, the translational diffusion undergoes strong freezing dynamics that are well described by the Vogel-Fulcher model assuming a freezing temperature of T = 157 K. The existence of the supercooled liquid region in the [Emim][TfO] IL should be taken into account when using this IL for a specific application.

摘要

通过核磁共振光谱研究了由1-乙基-3-甲基咪唑阳离子和三氟甲磺酸盐(三氟甲烷磺酸盐)阴离子组成的离子液体(IL)的分子动力学,简称为[Emim][TfO]。通过测量温度依赖的高场1H和F自旋晶格弛豫(SLR)速率、使用快速场循环弛豫法测量频率依赖的H和F SLR色散曲线以及温度依赖的1H和F扩散常数,并利用Emim阳离子上的主要核磁共振活性核是H,而TfO阴离子上的是F这一事实,分别研究了阳离子和阴离子的动力学。一个单一的理论弛豫模型通过用同一组拟合参数同时拟合所有数据,成功地再现了两种共振核的所有实验数据。通过差示扫描量热法(DSC)实验证实,冷却时,[Emim][TfO]在T = 256 K和结晶温度T≈227 - 222 K之间表现出过冷液相。理论分析表明,在[Emim][TfO]的液相和过冷液相状态下,H和F弛豫速率受旋转和平动扩散过程的影响,在T处没有不连续变化。虽然旋转扩散可以很好地描述为阿累尼乌斯热激活过程,但平动扩散经历了强烈的冻结动力学,用Vogel-Fulcher模型可以很好地描述,假设冻结温度为T = 157 K。在将这种离子液体用于特定应用时,应考虑[Emim][TfO]离子液体中过冷液相区域的存在。

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