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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >The role of viscosity in various dynamical processes of different fluorophores in ionic liquid-cosolvent mixtures: a femtosecond fluorescence upconversion study
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The role of viscosity in various dynamical processes of different fluorophores in ionic liquid-cosolvent mixtures: a femtosecond fluorescence upconversion study

机译:离子液 - 溶剂混合物中不同荧光团各种动力过程中粘度在不同荧光团中的作用:Femtosecond荧光上转化研究

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Literature reports provide ample evidence of the dynamical studies of various fluorophores in different room-temperature ionic liquid (RTIL)-cosolvent mixtures. However, most of the experimental and simulation studies reveal that similar to 50% of the spectral relaxation dynamics is fast and cannot be resolved using traditional time correlated single photon counting (TCSPC) measurements. Our group has also investigated the dynamics of a solvatochromic probe coumarin 153 (C153) in a RTIL-cosolvent mixture using a TCSPC setup (S. Sarkar, R. Pramanik, C. Ghatak, P. Setua and N. Sarkar, J. Phys. Chem. B, 2010, 114, 2779-2789). Consequently, a major portion of the solvation dynamics remained undetected and moreover we could not monitor the dynamics beyond 0.4 mole fraction of the cosolvents. Thus in this study, we have rekindled our interest to sufficiently capture the rotational anisotropy and solvation dynamics of C153 beyond 0.4 mole fraction of the cosolvents in the RTIL-cosolvent mixture employing femtosecond fluorescence upconversion measurements. Additionally, we have utilized another RTIL with a higher alkyl chain length and viscosity to obtain a comprehensive and quantitative picture of the role of viscosity on the dynamics of the probe molecule. The most interesting observation of the present work is that the viscosities of different RTIL-cosolvent mixtures can efficiently control the cis-trans isomerization kinetics of the anionic fluorophore merocyanine 540 (MC 540) and the translational diffusion of a hydrophobic probe. The optimization of geometrical structures of [EmimOs]-and [EmimOs]-cosolvent mixtures followed by frequency analyses in both gas and solution phases have been carried out using quantum chemical calculations with the aid of density functional theory (DFT) methods. The computation based on the bond distances, electron densities and non-covalent interactions (NCI) has also been used to investigate the existence of the hydrogen-bond (H-bond). Again to comprehend van der Waals interactions and the conventional hydrogen-bond, the evolution of NCI plots are simulated. Therefore, the detailed experimental and theoretical studies presented in this manuscript lead to the inference that addition of the conventional solvents finely tunes the physicochemical properties of RTILs and broadens their scope of applications in the fields of chemistry and biology.
机译:文献报告提供了充分证据了不同室温离子液体(RTIL)溶剂混合物中各种荧光团的动态研究的证据。然而,大多数实验和仿真研究表明,类似于50%的光谱松弛动力学是快速的,并且不能使用传统的时间相关的单光子计数(TCSPC)测量来解决。我们的小组还研究了使用TCSPC设置(S. Sarkar,R.Pramanik,C.Ghatak,P. Setua和N. Sarkar,J.Memal 。化学。B,2010,114,2779-2789)。因此,溶剂化动力学的主要部分仍未检测到,而且我们无法监控超出0.4摩尔薄膜的动力学。因此,在本研究中,我们重新推出了利益,以充分捕获C153的旋转各向异性和溶剂化动力学在rttil-cosolvent混合物中的求解阳离子的旋转各向异性和溶剂化动态,其在采用飞秒荧光升高测量。另外,我们使用另外的RTIL具有更高的烷基链长度和粘度,以获得粘度在探针分子动态的作用的综合和定量图像。对本作工作的最有趣观察是不同RTIL-共溶剂混合物的粘度可以有效地控制阴离子荧光团Merocyyanine 540(MC 540)的顺式 - 反式异构化动力学和疏水性探针的平移扩散。使用量子化学计算借助于密度泛函理论(DFT)方法,进行了[eMimos] - 和[eMimos] - 溶解的混合物的几何结构,然后在气体和溶液相中进行频率分析。还用于研究基于粘合距离,电子密度和非共价相互作用(NCI)的计算来研究氢键(H键)的存在。再次理解范德华相互作用和常规氢键,模拟了NCI图的演化。因此,本手术中呈现的详细实验和理论研究导致添加常规溶剂的推理,这些溶剂精细地调整了RTILS的物理化学性质,并在化学和生物学领域扩大了应用范围。

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