Mulliken Center for Theoretical Chemistry, Rheinische Friedrich-Wilhelms-Universität Bonn, Beringstr. 4+6, D-53115 Bonn, Germany.
Phys Chem Chem Phys. 2019 Feb 20;21(8):4472-4486. doi: 10.1039/c8cp07683a.
Four different ionic liquids (ILs) consisting of the bis(trifluoromethanesulfonyl)imide ([NTf2]-) anion, with structurally similar systematically varying cations, are investigated herein through classical molecular dynamics. The following cations were examined: pyrrolidinium ([pyrHH]+), piperidinium ([pipHH]+), N-butyl-pyrrolidinium ([pyrH4]+) and N-butyl-N-methyl-pyrrolidinium ([pyr14]+). The focus herein is on understanding the effect of increased ring size and alkyl chain addition, resulting in three protic ILs and one aprotic IL ([pyr14][NTf2]), on the physicochemical properties of the liquids studied herein. Addition of alkyl groups to the cation appears to cause a distinct weakening of inter-ionic interactions and ordering in comparison to increasing the ring size. The influence of these structural changes, however, is clearer on the ordering of like ions than oppositely charged ions. The protic ILs exhibit important similarities in the spatial arrangement of ions on account of their strong and directed H-bonding interactions. The cation is seen to influence particular conformations of the anion which further explains the more selective ordering in the protic ILs. However, the aggregation of the butyl side chain is also seen to be an important structural determinant in [pyrH4][NTf2] and [pyr14][NTf2]. We analyze the formation of domains in order to quantitatively evaluate the microheterogeneity arising in these systems from the separation of phases according to polarities. Velocity autocorrelation functions are studied in order to characterize the stronger caging effect in the protic ILs and the weakening of the caging effect upon addition of alkyl groups to the cation, these are consistent with the coordination environment within the respective liquids. In conclusion, significant correlations between the structure and properties of these ILs are observed and quantified within this contribution.
本文通过经典分子动力学研究了由双(三氟甲烷磺酰基)亚胺 ([NTf2]-) 阴离子组成的四种不同离子液体 (ILs),这些 ILs 的阳离子具有相似的结构,且系统地发生变化。本文研究了以下阳离子:吡咯烷鎓 ([pyrHH]+)、哌啶鎓 ([pipHH]+)、N-丁基吡咯烷鎓 ([pyrH4]+) 和 N-丁基-N-甲基吡咯烷鎓 ([pyr14]+)。本文的重点是了解增加环大小和烷基链添加对液体的理化性质的影响,这导致了三种质子化 IL 和一种非质子化 IL ([pyr14][NTf2])。与增加环大小相比,向阳离子中添加烷基基团似乎会导致离子间相互作用和有序性明显减弱。然而,这些结构变化的影响在同电荷离子的有序性上比在相反电荷离子上更为明显。质子化 IL 由于其强且定向的氢键相互作用,在离子的空间排列上表现出重要的相似性。可以看出,阳离子会影响阴离子的特定构象,这进一步解释了质子化 IL 中更具选择性的有序性。然而,还可以看出,丁基侧链的聚集也是 [pyrH4][NTf2] 和 [pyr14][NTf2] 中的重要结构决定因素。我们分析了域的形成,以便根据极性来定量评估这些系统中由于相分离而产生的微观不均匀性。研究了速度自相关函数,以表征质子化 IL 中更强的笼效应以及向阳离子中添加烷基基团导致的笼效应减弱,这与各自液体中的配位环境一致。总之,在本研究中观察到并量化了这些 ILs 的结构和性质之间的显著相关性。