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非极性溶剂对咪唑鎓离子液体中溶质旋转和溶剂化动力学的影响。

Effect of nonpolar solvents on the solute rotation and solvation dynamics in an imidazolium ionic liquid.

作者信息

Paul Aniruddha, Samanta Anunay

机构信息

School of Chemistry, University of Hyderabad, Hyderabad 500046, India.

出版信息

J Phys Chem B. 2008 Jan 24;112(3):947-53. doi: 10.1021/jp077536s. Epub 2007 Dec 29.

Abstract

Recognizing the potential of the mixed solvent systems comprising ionic liquid as one of the constituents in real applications, the steady-state and time-resolved fluorescence behavior of C153 has been studied in neat 1-butyl-3-methylimidazolium hexafluorophosphate and its mixtures with nonpolar solvents, namely, toluene and 1,4-dioxane. No significant effect of the cosolvent on the steady-state absorption or fluorescence spectra of C153 in ionic liquid has been observed. Time-resolved fluorescence anisotropy measurements show a decrease of the rotational correlation time of C153 with gradual addition of the cosolvent. Solvation dynamics in ionic liquid-cosolvent mixtures is found to be biphasic, and a decrease of the average solvation time is observed with increasing amount of the cosolvent in solution. The time-zero spectrum of C153 is found to shift toward higher energy with gradual addition of the nonpolar solvent, suggesting that the probe molecule experiences a more nonpolar environment at the early stage of the dynamics in mixed solvents. The blue shift of the time-zero spectrum caused by the addition of the nonpolar solvent results in a larger Stokes shift of the time-dependent spectra due to solvent relaxation in mixed solvents. A comparison of the time-dependent spectral data of the ionic liquid-toluene and ionic liquid-dioxane systems shows that, while a small amount of toluene can significantly affect the dynamics, comparatively, a larger amount of dioxane is required to bring about the same effect. This is explained in terms of favorable interactions between toluene and the imidazolium ring system leading to a more effective solubilization of toluene in the cybotactic region of the probe.

摘要

认识到包含离子液体作为实际应用中成分之一的混合溶剂体系的潜力,已研究了C153在纯1-丁基-3-甲基咪唑六氟磷酸盐及其与非极性溶剂(即甲苯和1,4-二氧六环)的混合物中的稳态和时间分辨荧光行为。未观察到共溶剂对离子液体中C153的稳态吸收或荧光光谱有显著影响。时间分辨荧光各向异性测量表明,随着共溶剂的逐渐加入,C153的旋转相关时间减小。发现离子液体-共溶剂混合物中的溶剂化动力学是双相的,并且随着溶液中共溶剂含量的增加,观察到平均溶剂化时间减少。随着非极性溶剂的逐渐加入,发现C153的零时间光谱向更高能量移动,这表明在混合溶剂动力学的早期阶段,探针分子经历了更非极性的环境。由于混合溶剂中的溶剂弛豫,由非极性溶剂的加入引起的零时间光谱的蓝移导致时间相关光谱的斯托克斯位移更大。离子液体-甲苯和离子液体-二氧六环体系的时间相关光谱数据比较表明,虽然少量甲苯会显著影响动力学,但相比之下,需要较大量的二氧六环才能产生相同的效果。这是根据甲苯与咪唑环系统之间的有利相互作用来解释的,这种相互作用导致甲苯在探针的有序溶剂化区域中更有效地溶解。

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