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An Infrared Spectroscopy Study of the Conformational Evolution of the Bis(trifluoromethanesulfonyl)imide Ion in the Liquid and in the Glass State

机译:红外光谱研究液态和玻璃态双(三氟甲磺酰基)亚胺离子的构象演变

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We measure the far-infrared spectrum of N,N-Dimethyl-N-ethyl-N-benzylammonium (DEBA) bis(trifluoromethanesulfonyl)imide (TFSI) ionic liquid (IL) in the temperature range between 160 and 307 K. Differential scanning calorimetry measurements indicate that such IL undergoes a glass transition around 210 K. DFT calculations allow us to assign all the experimental absorptions to specific vibrations of the DEBA cation or of the two conformers of the TFSI anion. We find that the vibration frequencies calculated by means of the PBE0 functional are in better agreement with the experimental ones than those calculated at the B3LYP level, largely used for the attribution of vibration lines of ionic liquids. Experimentally we show that, in the liquid state, the relative concentrations of the two conformers of TFSI depend on temperature through the Boltzmann factor and the energy separation,ΔH, is found to be≈2 kJ/mol, in agreement with previous calculations and literature. However, in the glassy state, the concentrations of the cis-TFSI and trans-TFSI remain fixed, witnessing the frozen state of this phase.
机译:我们在160至307 K的温度范围内测量N,N-二甲基-N-乙基-N-苄基铵(DEBA)双(三氟甲磺酰基)酰亚胺(TFSI)离子液体(IL)的远红外光谱。测量表明这种IL在210 K附近经历了玻璃化转变。DFT计算使我们能够将所有实验吸收分配给DEBA阳离子或TFSI阴离子的两个构象异构体的特定振动。我们发现,通过PBE0函数计算出的振动频率与实验频率相比,在B3LYP水平上得到的振动频率与实验频率更好地吻合,后者主要用于离子液体的振动线的归因。实验表明,在液态下,TFSI的两个构象异构体的相对浓度取决于玻尔兹曼因子的温度,并且发现能量分离ΔH为≈2kJ / mol,与先前的计算和文献一致。但是,在玻璃态下,顺式-TFSI和反式-TFSI的浓度保持固定,这是该阶段的冷冻状态。

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