首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Ionic Liquid-in-Oil Microemulsions Composed of Double Chain Surface Active Ionic Liquid as a Surfactant: Temperature Dependent Solvent and Rotational Relaxation Dynamics of Coumarin-153 in tPy]tTF2N]/[C4mim][AOT]/Benzene Microemulsions
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Ionic Liquid-in-Oil Microemulsions Composed of Double Chain Surface Active Ionic Liquid as a Surfactant: Temperature Dependent Solvent and Rotational Relaxation Dynamics of Coumarin-153 in tPy]tTF2N]/[C4mim][AOT]/Benzene Microemulsions

机译:双链表面活性离子液体作为表面活性剂组成的油中离子液体微乳液:香豆素153在tPy] tTF2N] / [C4mim] [AOT] /苯微乳液中的温度依赖性溶剂和旋转弛豫动力学

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In the recent past, nonaqueous microemulsions containing ionic liquids (ILs) have been utilized for performing chemical reactions, preparation of nanomaterials, and synthesis of nanostructured polymers and in drug delivery systems. The most promising fact about IL-in-oil microemulsions is their high thermal stability compared to that of aqueous microemulsions. In our earlier publication (Rao, V. G.; Ghosh, S.; Ghatak, C.; Mandal, S.; Brahmachari, U,; Sarkar, N. J. Phys. Chem. B 2012, 116, 2850-2855), we presented for the first time the possibility of creating huge number of IL-in-oil microemulsions, just by replacing the inorganic cation, Na~+, of NaAOT by any organic cation and using different ionic liquids as the polar core. In this manuscript we are interested in exploring the effect of temperature on such systems. We have characterized the phase diagram of the [Py][TF2N]/ [C4mim][AOT]/benzene ternary system at 298 K. We have shown that in the experimental temperature range employed in this study, the microemulsions remain stable and a slight decrease in the size of the microemulsions is observed with increasing temperature. We have reported the detailed study of solvent and rotational relaxation of coumarin 153 (C-153) in neat IL, N-methyl-N-propylpyrroIidinium bis((trifluoromethyI)sulfonyl)imide ([Py][TF2N]), and in [Py][TF2N]/[C4mim][AOT]/ benzene microemulsions using steady state and picosecond time-resolved spectroscopy. We have monitored the effect of (i) varying the [Py][TF2N]/[C4mim][AOT] molar ratio (Rvalue) and (ii) temperature on solvent and rotational relaxation of C-153. The features observed in absorption and emission spectra clearly indicate that (i) the probe molecules reside at the polar interfacial region of the [Py][TF2N]/[C4mim][AOT]/benzene microemulsions and (ii) with increasing R value the probe molecules move toward the polar IL-pool of the microemulsion. We have shown that the increase in solvation time on going from neat [Py][TF2N] to [Py][TF2N]-containing microemulsions is very small compared to the increase in solvation time on going from pure water to water-containing microemulsions. The average solvation time decreases with increasing R values at 298 IC, but it shows only a small R dependence compared to microemulsions containing solvents capable of forming hydrogen bonds. We have also shown that the temperature has substantial effect on the solvent and rotational relaxation of C-153 in neat [Py][TF2N] compared to that of [Py][TF2N]/[C4mim][AOT]/benzene microemulsions at R = 0.69.
机译:在最近的过去,含有离子液体(IL)的非水微乳液已被用于进行化学反应,纳米材料的制备,以及纳米结构聚合物的合成以及用于药物递送系统。与油性微乳液相比,油中IL-微乳液的最有希望的事实是它们的高热稳定性。在我们较早的出版物中(Rao,VG; Ghosh,S .; Ghatak,C .; Mandal,S .; Brahmachari,U ,; Sarkar,NJ Phys.Chem.B 2012,116,2850-2855),我们提出了第一次有可能通过仅用任何有机阳离子取代NaAOT的无机阳离子Na〜+并使用不同的离子液体作为极性核来产生大量的油中IL微乳液。在此手稿中,我们有兴趣探索温度对此类系统的影响。我们已经表征了[Py] [TF2N] / [C4mim] [AOT] /苯三元体系在298 K时的相图。我们已经表明,在本研究中使用的实验温度范围内,微乳液保持稳定且微弱。随着温度的升高,观察到微乳液尺寸的减小。我们已经报道了在纯净的IL,N-甲基-N-丙基吡咯烷鎓双((三氟甲基)磺酰基)亚胺([Py] [TF2N])和[中]香豆素153(C-153)的溶剂和旋转弛豫的详细研究。使用稳态和皮秒时间分辨光谱法测定Py] [TF2N] / [C4mim] [AOT] /苯微乳液。我们已经监测了(i)改变[Py] [TF2N] / [C4mim] [AOT]摩尔比(Rvalue)和(ii)温度对C-153溶剂和旋转弛豫的影响。在吸收光谱和发射光谱中观察到的特征清楚地表明:(i)探针分子位于[Py] [TF2N] / [C4mim] [AOT] /苯微乳液的极性界面区域,以及(ii)随着R值的增加,探针分子向微乳液的极性IL-池移动。我们已经表明,从纯净的[Py] [TF2N]变为含[Py] [TF2N]的微乳化的溶剂化时间的增加与从纯水到含水的微乳化的溶剂化时间的增加相比非常小。在298 IC下,平均溶剂化时间随R值的增加而减少,但与含能形成氢键的溶剂的微乳液相比,它的R依赖性很小。我们还表明,与[Py] [TF2N] / [C4mim] [AOT] /苯微乳液在R处的温度相比,温度对纯净[Py] [TF2N]中C-153的溶剂和旋转弛豫具有重大影响。 = 0.69。

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