Swamy Vincent P, Thulasiram Hirekodathakallu V, Rastrelli Federico, Saielli Giacomo
Organic Chemistry Division, CSIR-National Chemical Laboratory, Dr Homi Bhabha Road, Pune 411008, India.
Phys Chem Chem Phys. 2018 Apr 25;20(16):11470-11480. doi: 10.1039/c8cp01557k.
We present the 1H, 13C and 15N NMR chemical shifts of bulk ionic liquids based on 1-butyl-3-methylimidazolium (the cation also known as 1-butyl-3-picolinium) halides (Cl-, Br- and I-) and tribromide (Br3-) salts. A characterization in solution of the analogous ICl2- and I3- salts is also reported. A series of DFT calculations has been run to predict the features of the NMR spectra of the pure ILs based on a few selected supramolecular ionic aggregates. To test the effect of temperature, and vibrational and conformational motions, only for the chloride salt, we also run first-principles molecular dynamics simulations of the ion pair in the gas phase, using the ADMP scheme (Atom Centered Density Matrix Propagation molecular dynamics model). The aim of our investigation is to test whether a simple DFT based approach of ion-pairing in ionic liquids is capable of providing reliable results and under which conditions the protocol is robust. We obtained a very good agreement between the calculated and experimental spectra for the three halides, where the bulk structure of the ILs is dominated by H-bond interactions between the X- anion (X = Cl, Br and I) and the ortho protons of the pyridinium ring (a structural arrangement not too different from the solid-state structure of pyridinium halides). In contrast, when the H-bond is weak, as in the Br3- case, a number of supramolecular arrangements exist in solution and the simple DFT calculations of a few selected cases cannot exhaustively explore the complete energy landscape. Moreover, the dynamic effects due to thermal motion, evaluated by ADMP MD simulations of the chloride salt, appear to be not very significant.
我们展示了基于1-丁基-3-甲基咪唑鎓(阳离子也称为1-丁基-3-吡啶鎓)卤化物(Cl-、Br-和I-)以及三溴化物(Br3-)盐的本体离子液体的1H、13C和15N NMR化学位移。还报道了类似的ICl2-和I3-盐在溶液中的表征。基于一些选定的超分子离子聚集体,进行了一系列DFT计算以预测纯离子液体NMR光谱的特征。为了测试温度、振动和构象运动的影响,仅针对氯化物盐,我们还使用ADMP方案(以原子为中心的密度矩阵传播分子动力学模型)对气相中的离子对进行了第一性原理分子动力学模拟。我们研究的目的是测试基于DFT的离子液体离子配对简单方法是否能够提供可靠的结果,以及该方案在哪些条件下是稳健的。我们在三种卤化物的计算光谱和实验光谱之间获得了非常好的一致性,其中离子液体的本体结构由X-阴离子(X = Cl、Br和I)与吡啶鎓环的邻位质子之间的氢键相互作用主导(这种结构排列与卤化吡啶鎓的固态结构没有太大差异)。相比之下,当氢键较弱时,如在Br3-的情况下,溶液中存在许多超分子排列,并且对少数选定情况的简单DFT计算无法详尽地探索完整的能量景观。此外,通过氯化物盐的ADMP MD模拟评估的热运动引起的动态效应似乎不太显著。