Chang Hai-Chou, Jiang Jyh-Chiang, Liou You-Chang, Hung Chao-Hsin, Lai Ting-Yun, Lin Sheng Hsien
Department of Chemistry, National Dong Hwa University, Shoufeng, Hualien 974, Taiwan.
J Chem Phys. 2008 Jul 28;129(4):044506. doi: 10.1063/1.2958256.
The structural organization in mixtures of 1-butyl-3-methylimidazolium tetrafluoroborate ([bmim][BF(4)])/water or methanol was studied by infrared spectroscopy. No drastic change in the concentration dependence of the alkyl C-H band frequency was observed at high concentration of the ionic liquid. This behavior indicates a clustering of the ionic liquid in alkyl regions. Nevertheless, the presence of methanol significantly perturbs the ionic liquid-ionic liquid associations in the imidazolium region. On the basis of the responses to change in pressure and concentration, two different types of O-H species, i.e., free O-H and bonded O-H, were observed in the O-H stretching region. For [bmim][BF(4)]/water mixtures, the compression leads to loss of the free O-H band intensity. It is likely that free O-H is switched to bonded O-H as high pressures are applied. For [bmim][BF(4)]/methanol mixtures, the free O-H is still stable under high pressures.
通过红外光谱研究了1-丁基-3-甲基咪唑四氟硼酸盐([bmim][BF₄])与水或甲醇混合物的结构组织。在离子液体高浓度时,未观察到烷基C-H带频率的浓度依赖性有剧烈变化。这种行为表明离子液体在烷基区域发生聚集。然而,甲醇的存在显著扰乱了咪唑鎓区域中离子液体-离子液体的缔合。基于对压力和浓度变化的响应,在O-H伸缩区域观察到两种不同类型的O-H物种,即游离O-H和键合O-H。对于[bmim][BF₄]/水混合物,压缩导致游离O-H带强度损失。在施加高压时,游离O-H很可能转变为键合O-H。对于[bmim][BF₄]/甲醇混合物,游离O-H在高压下仍然稳定。