Shirota Hideaki, Castner Edward W
Department of Chemistry and Chemical Biology, Rutgers, The State University of New Jersey, 610 Taylor Road, Piscataway, New Jersey 08854-8087, USA.
J Phys Chem B. 2005 Nov 24;109(46):21576-85. doi: 10.1021/jp053930j.
We have prepared novel room temperature ionic liquids (RTILs) with trimethylsilylmethyl (TMSiM)-substituted imidazolium cations and compared the properties of these liquids with those for which the TMSiM group is replaced by the analogous neopentyl group. The ionic liquids are prepared with both tetrafluoroborate (BF(4)(-)) and bis(trifluoromethylsulfonyl)imide (NTf(2)(-)) anions paired with the imidazolium cations. At 22 degrees C, the TMSiM-substituted imidazolium ILs have shear viscosities that are reduced by a factor of 1.6 and 7.4 relative to the alkylimidazolium ILs for the NTf(2)(-) and BF(4)(-) anions, respectively. To understand the effect of silicon substitution on the viscosity, the charge densities have been calculated by using density functional theory electronic structure calculations. The ultrafast intermolecular, vibrational, and orientational dynamics of these RTILs have been measured by using femtosecond optical heterodyne-detected Raman-induced Kerr effect spectroscopy (OHD-RIKES). The intermolecular dynamical spectrum provides an estimate of the strength of interactions between the ions in the RTILs, and provides a qualitative explanation for the observed reduction in viscosity for the silicon-substituted RTILs.
我们制备了具有三甲基硅甲基(TMSiM)取代咪唑阳离子的新型室温离子液体(RTILs),并将这些液体的性质与TMSiM基团被类似新戊基取代的液体的性质进行了比较。离子液体是用四氟硼酸根(BF(4)(-))和双(三氟甲基磺酰)亚胺(NTf(2)(-))阴离子与咪唑阳离子配对制备的。在22摄氏度时,相对于NTf(2)(-)和BF(4)(-)阴离子的烷基咪唑离子液体,TMSiM取代的咪唑离子液体的剪切粘度分别降低了1.6倍和7.4倍。为了理解硅取代对粘度的影响,通过使用密度泛函理论电子结构计算来计算电荷密度。这些RTILs的超快分子、振动和取向动力学已通过使用飞秒光学外差检测拉曼诱导克尔效应光谱(OHD-RIKES)进行了测量。分子间动力学光谱提供了RTILs中离子间相互作用强度的估计,并为观察到的硅取代RTILs粘度降低提供了定性解释。