Wu Bo, Liu Yang, Zhang Yumei, Wang Huaping
State Key Laboratory for Modification of Chemical Fiber and Polymer Materials, Donghua University, Northern Ren-ming Road 2999, Shanghai 201620, China.
Chemistry. 2009 Jul 13;15(28):6889-93. doi: 10.1002/chem.200802742.
In this contribution, an insight into the interactions between ionic liquids (ILs), 1-butyl-3-methylimidazolium tetrafluoroborate, [Bmim]BF(4), and 1-allyl-3-methylimidazolium chloride, [Amim]Cl, and water is presented using near-infrared (NIR) spectroscopic measurements. Distinct differences were found in the NIR spectra of pure [Amim]Cl and [Bmim]BF(4), whereby we propose optimized conformations. It was found that the relative position of the anion with respect to imidazolium cation is different in these two ILs. The geometry difference determined their different interaction modes with water, for example, the NIR spectra in alkyl group region were different for these two ILs/H(2)O mixtures, irrespective of being in a water-rich region or IL-rich region. However, their NIR spectra for aromatic group were similar, whereby we deduced that for both ILs, the water molecules were favorable to form hydrogen bonds with the proton H2 on imidazolium ring, rather than H4 and H5. Furthermore, it was shown that water molecules preferred to interact with BF(4)(-), but Cl(-) interacted more specifically with aromatic C-H groups compared with BF(4)(-). This was confirmed by the fact that the supramolecular structure of aqueous [Bmim]BF(4) solution was destroyed as mole fraction of water surpasses 0.3979, which was lower than the value of 0.5822 for [Amim]Cl/H(2)O. These results would have important directive significance for the study of the aggregation behavior and recovery of hydrophilic ILs in water.
在本论文中,通过近红外(NIR)光谱测量,深入研究了离子液体(ILs)、1-丁基-3-甲基咪唑四氟硼酸盐([Bmim]BF₄)和1-烯丙基-3-甲基咪唑氯盐([Amim]Cl)与水之间的相互作用。在纯[Amim]Cl和[Bmim]BF₄的近红外光谱中发现了明显差异,据此我们提出了优化构象。结果发现,在这两种离子液体中,阴离子相对于咪唑阳离子的相对位置不同。几何结构的差异决定了它们与水的不同相互作用模式,例如,这两种离子液体/水混合物在富水区域或富离子液体区域的烷基区域近红外光谱不同。然而,它们的芳环区域近红外光谱相似,由此我们推断,对于这两种离子液体,水分子更倾向于与咪唑环上的质子H₂形成氢键,而不是H₄和H₅。此外,研究表明水分子更倾向于与BF₄⁻相互作用,但与BF₄⁻相比,Cl⁻与芳环C-H基团的相互作用更具特异性。这一点通过以下事实得到证实:当水的摩尔分数超过0.3979时,[Bmim]BF₄水溶液的超分子结构被破坏,该值低于[Amim]Cl/水体系的0.5822。这些结果对于研究亲水性离子液体在水中的聚集行为和回收具有重要的指导意义。