Adhikari Aniruddha, Sahu Kalyanasis, Dey Shantanu, Ghosh Subhadip, Mandal Ujjwal, Bhattacharyya Kankan
Department of Physical Chemistry, Indian Association for Cultivation of Science, Jadavpur, Kolkata 700 032, India.
J Phys Chem B. 2007 Nov 8;111(44):12809-16. doi: 10.1021/jp075693l. Epub 2007 Oct 18.
Solvation dynamics in a neat ionic liquid, 1-pentyl-3-methyl-imidazolium tetra-flouroborate ([pmim][BF4]) and its microemulsion in Triton X-100 (TX-100)/benzene is studied using femtosecond up-conversion. In both the neat ionic liquid and the microemulsion, the solvation dynamics is found to depend on excitation wavelength (lambda(ex)). The lambda(ex) dependence is attributed to structural heterogeneity in neat ionic liquid (IL) and in IL microemulsion. In neat IL, the heterogeneity arises from clustering of the pentyl groups which are surrounded by a network of cation and anions. Such a nanostructural organization is predicted in many recent simulations and observed recently in an X-ray diffraction study. In an IL microemulsion, the surfactant (TX-100) molecules aggregate in form of a nonpolar peripheral shell around the polar pool of IL. The micro-environment in such an assembly varies drastically over a short distance. The dynamic solvent shift (and average solvation time) in neat IL as well as in IL microemulsions decreases markedly as lambda(ex) increases from 375 to 435 nm. In a [pmim][BF4]/water/TX-100/benzene quaternary microemulsion, the solvation dynamics is slower than that in a microemulsion without water. This is ascribed to the smaller size of the water containing microemulsion. The anisotropy decay in an IL microemulsion is found to be faster than that in neat IL.
利用飞秒上转换技术研究了纯离子液体1-戊基-3-甲基咪唑四氟硼酸盐([pmim][BF4])及其在Triton X-100(TX-100)/苯中的微乳液中的溶剂化动力学。在纯离子液体和微乳液中,均发现溶剂化动力学取决于激发波长(λ(ex))。λ(ex)依赖性归因于纯离子液体(IL)和IL微乳液中的结构异质性。在纯IL中,异质性源于戊基的聚集,这些戊基被阳离子和阴离子网络包围。这种纳米结构组织在最近的许多模拟中都有预测,并且最近在一项X射线衍射研究中也有观察到。在IL微乳液中,表面活性剂(TX-100)分子以非极性外围壳的形式聚集在IL的极性池周围。在这样的聚集体中,微环境在短距离内会发生剧烈变化。随着λ(ex)从375 nm增加到435 nm,纯IL以及IL微乳液中的动态溶剂位移(和平均溶剂化时间)显著降低。在[pmim][BF4]/水/TX-100/苯四元微乳液中,溶剂化动力学比不含水的微乳液慢。这归因于含水微乳液的尺寸较小。发现IL微乳液中的各向异性衰减比纯IL中的更快。