Niemann Thomas, Strate Anne, Ludwig Ralf, Zeng Helen J, Menges Fabian S, Johnson Mark A
Department of Chemistry, University of Rostock, 18059 Rostock, Germany.
Phys Chem Chem Phys. 2019 Aug 21;21(33):18092-18098. doi: 10.1039/c9cp03300a.
We address the cooperative hydrogen bonding interactions in play between the ionic constituents of ionic liquids (ILs) with particular attention to those involving the attractive interactions between two cations in the system 1-(2-hydroxyethyl)pyridinium tetrafluoroborate [HEPy][BF4]. This is accomplished by comparing the temperature-dependent linear infrared spectra of [HEPy][BF4] with that of the molecular mimic of its cation, 2-phenylethanol (PhenEthOH). We then explored the structural motifs of these H-bonded configurations at the molecular level by analyzing the cryogenic ion vibrational predissociation spectroscopy of cold (∼35 K) gas phase cluster ions with quantum chemical methods. The analysis of the OH stretching bands reveals the formation of the various binding motifs ranging from the common +OHBF4- interaction in ion-pairs (c-a) to the unusual +OH+OH interaction (c-c) in linear and cyclic, homodromic H-bonding domains. Replacing ion-pairs by the molecular (neutral) analogue of the IL cation also results in the formation of positively charged cyclic motifs, with the bands of the gas phase cationic cyclic tetramer (HEPy+)(PhenEthOH)3 appearing quite close to those assigned previously to cyclic tetramers in the liquid. These conclusions are supported by density functional theory (DFT) calculations of the cationic and neutral clusters as well as the local structures in the liquid. Our combined experimental and theoretical approach for the gas and the liquid phases provides important insight into the competition between differently H-bonded and charged constituents in liquids.
我们研究了离子液体(ILs)离子成分之间存在的协同氢键相互作用,特别关注了1-(2-羟乙基)吡啶四氟硼酸盐[HEPy][BF4]体系中两个阳离子之间的吸引相互作用。这是通过比较[HEPy][BF4]与阳离子的分子模拟物2-苯乙醇(PhenEthOH)随温度变化的线性红外光谱来实现的。然后,我们通过量子化学方法分析冷(约35K)气相团簇离子的低温离子振动预解离光谱,在分子水平上探索了这些氢键构型的结构基序。对OH伸缩带的分析揭示了各种结合基序的形成,范围从离子对中常见的+OHBF4-相互作用(c-a)到线性和环状同向氢键域中不寻常的+OH+OH相互作用(c-c)。用离子液体阳离子的分子(中性)类似物取代离子对也会导致带正电的环状基序形成,气相阳离子环状四聚体(HEPy+)(PhenEthOH)3的谱带与先前分配给液体中环状四聚体的谱带非常接近。这些结论得到了阳离子和中性团簇以及液体中局部结构的密度泛函理论(DFT)计算的支持。我们对气相和液相的实验与理论相结合的方法,为深入了解液体中不同氢键结合和带电成分之间的竞争提供了重要的见解。