York Structural Biology Laboratory, Department of Chemistry, University of York , Heslington, York YO10 5DD, U.K.
TWI Ltd. , Granta Park, Great Abington, Cambridge, CB21 6AL, U.K.
J Phys Chem B. 2017 Jan 26;121(3):599-609. doi: 10.1021/acs.jpcb.6b10562. Epub 2017 Jan 13.
The sensitivity of ionic liquids (ILs) to water affects their physical and chemical properties, even at relatively low concentrations, yet the structural thermodynamics of protic IL- (PIL-) water systems at low water concentrations still remains unclear. Using the rigorous Kirkwood-Buff theory of solutions, which can quantify the interactions between species in IL-water systems solely from thermodynamic data, we have shown the following: (1) Between analogous protic and aprotic ILs (AILs), the AIL cholinium bis(trifluoromethanesulfonyl)imide ([Ch][NTf]) shows stronger interactions with water at low water concentrations, with the analogous PIL N,N-dimethylethanolammonium bis(trifluoromethanesulfonyl)imide ([DMEtA][NTf]) having stronger water-ion interactions at higher water contents, despite water-ion interactions weakening with increasing water content in both systems. (2) Water has little effect on the average ion-ion interactions in both protic and aprotic ILs, aside from the AIL [Ch][NTf], which shows a strengthening of ion-ion interactions with increasing water content. (3) Self-association of water in both PIL-water systems leading to the presence of large aggregates of water in IL-rich compositions has been inferred. Water-water interactions in [DMEtA][NTf] were found to be similar to those of dialkylimidazolium AILs, whereas these interactions were much larger in the PIL N,N-dimethylethanolammonium propionate ([DMEtA][Pr]), attributed to the change in anion-water interactions.
离子液体(ILs)对水的敏感性会影响其物理和化学性质,即使在相对较低的浓度下也是如此,但质子离子液体(PIL)-水体系在低含水量下的结构热力学仍然不清楚。我们使用严格的 Kirkwood-Buff 溶液理论,该理论仅根据热力学数据就可以量化 IL-水体系中物种之间的相互作用,结果表明:(1)在类似的质子和非质子 IL 之间,非质子 IL 胆碱双(三氟甲烷磺酰基)亚胺 ([Ch][NTf]) 在低含水量下与水的相互作用更强,而类似的 PIL N,N-二甲基乙醇铵双(三氟甲烷磺酰基)亚胺 ([DMEtA][NTf]) 在更高的含水量下具有更强的水-离子相互作用,尽管在这两种体系中,水-离子相互作用随着含水量的增加而减弱。(2)水对质子和非质子 IL 中离子离子相互作用的平均影响很小,除了 AIL [Ch][NTf],其随着含水量的增加而增强离子离子相互作用。(3)推断出在 PIL-水体系中,水的自缔合导致在 IL 丰富的组成中存在大量的水聚集体。在 [DMEtA][NTf] 中发现水-水相互作用类似于二烷基咪唑啉 AIL 的相互作用,而在 PIL N,N-二甲基乙醇铵丙酸盐 ([DMEtA][Pr]) 中这些相互作用要大得多,这归因于阴离子-水相互作用的变化。