Molecular dynamics of 1-ethyl-3-methylimidazolium triflate ionic liquid studied by 1H and 19F nuclear magnetic resonances

被引:29
作者
Wencka, Magdalena [1 ]
Apih, Tomaz [2 ]
Korosec, Romana Cerc [3 ]
Jenczyk, Jacek [4 ,5 ]
Jarek, Marcin [4 ,5 ]
Szutkowski, Kosma [4 ,5 ]
Jurga, Stefan [4 ,5 ]
Dolinsek, Janez [2 ,6 ]
机构
[1] Polish Acad Sci, Inst Mol Phys, Ul Smoluchowskiego 17, PL-60179 Poznan, Poland
[2] Jozef Stefan Inst, Jamova 39, SI-1000 Ljubljana, Slovenia
[3] Univ Ljubljana, Fac Chem & Chem Technol, Vecna Pot 113, SI-1000 Ljubljana, Slovenia
[4] Adam Mickiewicz Univ, NanoBioMed Ctr, Ul Umultowska 85, PL-60687 Poznan, Poland
[5] Adam Mickiewicz Univ, Dept Macromol Phys, Ul Umultowska 85, PL-60687 Poznan, Poland
[6] Univ Ljubljana, Fac Math & Phys, Jadranska 19, SI-1000 Ljubljana, Slovenia
关键词
ROTATIONAL-DYNAMICS; SPIN RELAXATION; 1-BUTYL-3-METHYLIMIDAZOLIUM HEXAFLUOROPHOSPHATE; TRANSLATIONAL DYNAMICS; GREEN SOLVENTS; NMR; BEHAVIOR; STATE;
D O I
10.1039/c7cp01045a
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
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 H-1 and F-19 spin-lattice relaxation (SLR) rates, the frequency-dependent H-1 and F-19 SLR dispersion curves using fast-field-cycling relaxometry, and the temperature-dependent H-1 and F-19 diffusion constants, and by utilizing the fact that the primary NMR-active nucleus on the Emim cation is 1H, whereas on the TfO anion it is F-19, 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-SL = 256 K and the crystallization temperature T-Cr approximate to 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-1 and F-19 relaxation rates are affected by both the rotational and translational diffusional processes with no discontinuous change at TSL. 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-0 = 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.
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页码:15368 / 15376
页数:9
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