Paschoal Vitor Hugo, Ribeiro Mauro C C
Laboratório de Espectroscopia Molecular, Departamento de Química Fundamental, Instituto de Química, Universidade de São Paulo, 05513-970, São Paulo, SP, Brazil.
Phys Chem Chem Phys. 2023 Oct 11;25(39):26475-26485. doi: 10.1039/d3cp02914j.
Protic ionic liquids (PILs) typically show a complex band shape in their infrared (IR) spectra in the high-frequency range due to the hydrogen stretching vibrations of functional groups forming rather strong hydrogen bonds (H-bonds). In the low-frequency range, the intermolecular stretching mode of the H-bond leaves a mark in the far-IR spectrum of PILs. In this study, the IR spectrum of the PIL 2-hydroxyethylammonium formate, [HOCHCHNH][HCOO], is investigated in order to identify the different modes that contribute to the high-frequency band shape, the cation (NH), (OH), and (CH) modes, and the anion (CH) mode, as well as the intermolecular mode of the strongest H-bond in the far-IR spectrum. The assignment is validated by quantum chemistry calculations of clusters at the density functional theory (DFT) level for four ionic pairs and by molecular dynamics (AIMD) simulations of ten ionic pairs. There is good agreement between the vibrational frequencies obtained from DFT and AIMD simulations for both the high- and low-frequency ranges. Based on the calculations, the strong H-bond interaction between the cation -NH group and [HCOO] gives a broad band envelope associated with the (NH) mode in the high-frequency range of the IR spectrum on which there are narrower peaks corresponding to the (OH) and (CH) modes. In the far-IR (FIR) spectrum, the anions' rattling motion gives a broad feature with a maximum at 160 cm, while the H-bond's intermolecular NH⋯O stretching mode appears as a peak at 255 cm.
质子离子液体(PILs)由于形成相当强氢键(H键)的官能团的氢伸缩振动,在其红外(IR)光谱的高频范围内通常呈现复杂的谱带形状。在低频范围内,氢键的分子间伸缩模式在PILs的远红外光谱中留下印记。在本研究中,对质子离子液体甲酸2-羟乙基铵[HOCH₂CH₂NH₃][HCOO]的红外光谱进行了研究,以识别对高频谱带形状有贡献的不同模式,即阳离子的(NH)、(OH)和(CH)模式、阴离子的(CH)模式,以及远红外光谱中最强氢键的分子间模式。通过对四个离子对在密度泛函理论(DFT)水平上的团簇量子化学计算以及对十个离子对的分子动力学(AIMD)模拟对归属进行了验证。在高频和低频范围内,从DFT和AIMD模拟获得的振动频率之间有很好的一致性。基于计算结果,阳离子-NH基团与[HCOO]之间强烈的氢键相互作用在红外光谱的高频范围内产生了与(NH)模式相关的宽带包络,在该宽带包络上有对应于(OH)和(CH)模式的较窄峰。在远红外(FIR)光谱中,阴离子的晃动运动产生了一个在160 cm⁻¹处有最大值的宽峰,而氢键的分子间NH⋯O伸缩模式在255 cm⁻¹处表现为一个峰。