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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Rotational dynamics of positively and negatively charged solutes in ionic liquid and viscous molecular solvent studied by time-resolved fluorescence anisotropy measurements
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Rotational dynamics of positively and negatively charged solutes in ionic liquid and viscous molecular solvent studied by time-resolved fluorescence anisotropy measurements

机译:通过时间分辨荧光各向异性测量研究了离子液体和粘性分子溶剂中带正电和带负电的溶质的旋转动力学

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摘要

Rotational dynamics of two negatively and positively charged solutes, 1-anilinonaphthalene-8-sulfonate (ANS) and ethidium bromide (EB), respectively, have been studied in an ionic liquid, 1-butyl-3-methylimidazolium tetrafluoroborate ([bmim][BF4]) and a conventional viscous solvent, glycerol, at different temperatures to obtain insight into the nature of various forces that operate in the ionic liquid. The fluorescence anisotropy of the systems decays exponentially with time in both the solvents. Under isoviscous conditions, the reorientation time of each probe molecule is found to be very similar in ionic liquid and glycerol indicating that the electrostatic forces exert negligible influence on the charged solute molecules. Analysis of the experimentally measured reorientation times of the two solutes using the Stokes-Einstein-Debye hydrodynamic theory shows that the rotational diffusion of ANS is best represented by a behavior that falls in-between the stick and slip boundary conditions, whereas EB exhibits a superstick behavior indicating its strong association with the solvent molecules. The association between the positively charged solute EB with ionic liquid and glycerol, which is also evident from a much higher value of the rotational coupling constant, appears to be mediated by hydrogen bonding interactions.
机译:分别在离子液体1-丁基-3-甲基咪唑四氟硼酸盐([bmim] []中研究了两种带负电荷和带正电荷的溶质分别为1-苯胺基萘-8-磺酸盐(ANS)和溴化乙锭(EB)的旋转动力学。 BF4]和传统的粘性溶剂甘油在不同的温度下,以了解离子液体中各种作用力的性质。在两种溶剂中,系统的荧光各向异性均随时间呈指数衰减。在等粘度条件下,发现每个探针分子在离子液体和甘油中的重新定向时间非常相似,这表明静电力对带电溶质分子的影响可忽略不计。使用Stokes-Einstein-Debye流体动力学理论对两种溶质的实验测得的重取向时间进行的分析表明,ANS的旋转扩散最好用介于粘滞和滑移边界条件之间的行为来表示,而EB则表现出超级粘滞行为表明其与溶剂分子的强缔合。带正电荷的溶质EB与离子液体和甘油之间的缔合似乎是通过氢键相互作用来介导的,这从旋转耦合常数的高得多的值中也可以看出。

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