Department of Chemistry, Dr. Moulay Tahar University of Saida, 20000 Saida, Algeria; Chemistry Laboratory of Synthesis, Properties, and Applications (CLSPA-Saida), 20000 Saida, Algeria; Laboratoire de Chimie Moléculaire et Thio-organique, ENSICAEN, University of Caen, 6 Boulevard Maréchal Juin, 14050 Caen, France.
Department of Basic Sciences, Institute of Infrastructure Technology Research and Management, Ahmedabad 380026, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2023 Apr 15;291:122325. doi: 10.1016/j.saa.2023.122325. Epub 2023 Jan 6.
In the present work, four branched methylated, 1,2-dimethyl-3-isopropyl-imidazolium (i-[CDmim]) and protonated,1-methyl-3-isopropyl-imidazolium (i-[Cmim])-based ionic liquids (ILs) with varying anion (Br, BF, PF, and NTf) were synthesized and investigated by NMR, infrared (IR) and Raman spectroscopy. Based on infrared and Raman spectroscopy, complete vibrational assignments have been performed. The IR and Raman analysis revealed that the vibrational spectra are virtually unaffected upon methylation, while significant frequency changes were observed by changing anion. Furthermore, to determine the electronic structure, energetic stability, and vibrational properties of these i-[CDmim]Y, i-[Cmim]Y (Y = Br, BF, PF, and NTf) ion pairs, quantum chemical calculations including the dispersion correction method are performed both on single ions and on ionic couples. The calculated electron density was analyzed to expose non-covalent intra- and interionic interactions by the quantum theory of atoms in molecules (AIM) and interpreted in terms of both anion dependence and type of interaction. Computational results suggest that for all ionic couples the most energetically stable configuration is obtained with the anions located close to the C2 position of the imidazolium cation. However, in the case of i-[Cmim]NTf and i-[CDmim]BF, similar energies were obtained in configurations 2 and 3 where the anion is located above the imidazolium ring. For i-[Cmim]Br a stronger hydrogen bond is predicted than for other studied ILs. Calculations indicate that a red shift of the CH stretching bands should occur due to hydrogen bonding; indeed, such displacement of bands is experimentally observed.
在本工作中,合成了四种支链甲基化的 1,2-二甲基-3-异丙基-咪唑鎓(i-[CDmim])和质子化的 1-甲基-3-异丙基-咪唑鎓(i-[Cmim])基离子液体(ILs),其阴离子分别为 Br、BF、PF 和 NTf,并通过 NMR、红外(IR)和拉曼光谱进行了研究。基于红外和拉曼光谱,我们完成了完整的振动归属。IR 和 Raman 分析表明,甲基化几乎不会影响振动光谱,而阴离子的变化则会观察到显著的频率变化。此外,为了确定这些 i-[CDmim]Y、i-[Cmim]Y(Y = Br、BF、PF 和 NTf)离子对的电子结构、能量稳定性和振动性质,我们进行了量子化学计算,包括色散校正方法,分别对单离子和离子对进行了计算。通过原子分子量子理论(AIM)分析计算得到的电子密度,揭示了非共价的内离子和离子间相互作用,并根据阴离子依赖性和相互作用类型进行了解释。计算结果表明,对于所有离子对,最稳定的构型是阴离子位于咪唑鎓阳离子的 C2 位置附近。然而,对于 i-[Cmim]NTf 和 i-[CDmim]BF,在阴离子位于咪唑环上方的构型 2 和 3 中,获得了相似的能量。对于 i-[Cmim]Br,预测到的氢键比其他研究的 ILs 更强。计算表明,由于氢键的存在,CH 伸缩带应该发生红移;实际上,实验观察到了这种带的位移。