Batista Marta L S, Kurnia Kiki A, Pinho Simão P, Gomes José R B, Coutinho João A P
Departamento de Química, CICECO, Universidade de Aveiro , 3810-193 Aveiro, Portugal.
J Phys Chem B. 2015 Jan 29;119(4):1567-78. doi: 10.1021/jp510125x. Epub 2015 Jan 9.
The solvation of cyano- (CN-) based ionic liquids (ILs) and their capacity to establish hydrogen bonds (H-bonds) with water was studied by means of experimental and computational approaches. Experimentally, water activity data were measured for aqueous solutions of ILs based on 1-butyl-3-methylimidazolium (BMIM) cation combined with one of the following anions: thiocyanate (SCN), dicyanamide (DCA), or tricyanomethanide (TCM), and of 1-ethyl-3-methylimidazolium tetracyanoborate ([EMIM][TCB]). From the latter data, water activity coefficients were estimated showing that [BMIM][SCN] and [BMIM][DCA], unlike [BMIM][TCM] and [EMIM][TCB], are able to establish favorable interactions with water. Computationally, the conductor like screening model for real solvents (COSMO-RS) was used to estimate the water activity coefficients which compare well with the experimental ones. From the COSMO-RS results, it is suggested that the polarity of each ion composing the ILs has a strong effect on the solvation phenomena. Furthermore, classical molecular dynamics (MD) simulations were performed for obtaining an atomic level picture of the local molecular neighborhood of the different species. From the experimental and computational data it is showed that increasing the number of CN groups in the ILs' anions does not enhance their ability to establish H-bonds with water but decreases their polarities, being [BMIM][DCA] and [BMIM][SCN] the ones presenting higher propensity to interact.
通过实验和计算方法研究了氰基(CN-)基离子液体(ILs)的溶剂化作用及其与水形成氢键(H键)的能力。实验方面,测量了基于1-丁基-3-甲基咪唑鎓(BMIM)阳离子与以下阴离子之一组合的离子液体水溶液的水活度数据:硫氰酸盐(SCN)、双氰胺(DCA)或三氰甲烷化物(TCM),以及1-乙基-3-甲基咪唑鎓四氰硼酸盐([EMIM][TCB])。根据后者的数据,估算了水活度系数,结果表明[BMIM][SCN]和[BMIM][DCA]与[BMIM][TCM]和[EMIM][TCB]不同,能够与水建立良好的相互作用。计算方面,使用真实溶剂的导体类筛选模型(COSMO-RS)估算水活度系数,其与实验值比较吻合。从COSMO-RS结果来看,表明构成离子液体的每个离子的极性对溶剂化现象有很强的影响。此外,进行了经典分子动力学(MD)模拟,以获得不同物种局部分子环境的原子水平图像。从实验和计算数据可知,离子液体阴离子中CN基团数量的增加并不会增强其与水形成氢键的能力,反而会降低其极性,[BMIM][DCA]和[BMIM][SCN]具有更高的相互作用倾向。