School of Chemistry, WestCHEM, University of Glasgow , Glasgow G12 8QQ, U.K.
J Am Chem Soc. 2017 May 31;139(21):7160-7163. doi: 10.1021/jacs.7b03036. Epub 2017 May 22.
Gigahertz- to terahertz-frequency infrared and Raman spectra contain a wealth of information concerning the structure, intermolecular forces, and dynamics of ionic liquids. However, these spectra generally have a large number of contributions ranging from slow diffusional modes to underdamped librations and intramolecular vibrational modes. This makes it difficult to isolate effects such as the role of Coulombic and hydrogen-bonding interactions. We have applied far-infrared and ultrafast optical Kerr effect spectroscopies on carefully selected ions with a greater or lesser degree of symmetry in order to isolate spectral signals of interest. This has allowed us to demonstrate the presence of longitudinal and transverse optical phonon modes and a great similarity of alkylammonium-based protic ionic liquids to liquid water. The data show that such phonon modes will be present in all ionic liquids, requiring a reinterpretation of their spectra.
千兆赫兹至太赫兹频率的红外和拉曼光谱包含了大量关于离子液体的结构、分子间力和动力学的信息。然而,这些光谱通常有大量的贡献,从缓慢的扩散模式到欠阻尼的摆动和分子内振动模式。这使得很难分离出诸如库仑和氢键相互作用的作用等效应。我们已经在具有不同程度对称性的精心选择的离子上应用了远红外和超快光克尔效应光谱学,以分离感兴趣的光谱信号。这使我们能够证明纵光学声子模式和横光学声子模式的存在,并表明基于烷基铵的质子离子液体与液态水非常相似。数据表明,这些声子模式将存在于所有离子液体中,这需要对它们的光谱进行重新解释。