首页> 外文期刊>ACS Omega >Role of Different States of Solubilized Water on Solvation Dynamics and Rotational Relaxation of Coumarin 490 in Reverse Micelles of Gemini Surfactants, Water/12-s-12.2Br– (s = 5, 6, 8)-Propanol/Cyclohexane
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Role of Different States of Solubilized Water on Solvation Dynamics and Rotational Relaxation of Coumarin 490 in Reverse Micelles of Gemini Surfactants, Water/12-s-12.2Br– (s = 5, 6, 8)-Propanol/Cyclohexane

机译:不同溶解态水对双子表面活性剂水/12-s-12.2Br–(s = 5,6,8)/ n-丙醇/环己烷的反胶束中香豆素490溶解动力学和旋转弛豫的作用

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The present study demonstrates how the different states of solubilized water viz. quaternary ammonium headgroup-bound, bulklike, counterion-bound, and free water in reverse micelles of a series of cationic gemini surfactants, water/12-s -12 (s = 5, 6, 8).2Br~(–)/n -propanol/cyclohexane, control the solvation dynamics and rotational relaxation of Coumarin 490 (C-490) and microenvironment of the reverse micelles. The relative number of solubilized water molecules of a given state per surfactant molecule decides major and minor components. A rapid increase in the number of bulklike water molecules per surfactant molecule as compared to the slow increase in the number of each of headgroup- and counterion-bound water molecules per surfactant molecule with increasing water content (W _(o)) in a given reverse micellar system is responsible for the increase in the rate of solvation and rotational relaxation of C-490. The increase in the number of counterion-bound water molecules per surfactant molecule and the concomitant decrease in the number of bulklike water molecules per surfactant molecule with increasing spacer chain length of gemini surfactants at a given W _(o) are ascribed to the slower rates of both solvation and rotational relaxation. Relative abundances of different states of water have a role on the microenvironment of the reverse micelles as well. Thus, a comprehensive effect of different states of water on dynamics in complex biomimicking systems has been presented here.
机译:本研究表明增溶的水的不同状态如何。一系列阳离子双子表面活性剂,水/ 12-s -12(s = 5、6、8).2Br的反胶束中季铵头基结合的,块状的,抗衡离子结合的和游离水〜(-)/ n-丙醇/环己烷控制香豆素490(C-490)的溶剂化动力学和旋转弛豫以及反胶束的微环境。每个表面活性剂分子给定状态的溶解水分子的相对数量决定了主要成分和次要成分。与每个表面活性剂分子的与头基结合和抗衡离子结合的水分子的数量随水含量增加的缓慢增加相比,每个表面活性剂分子的块状水分子的数量迅速增加(i W_(o))在给定的反胶束系统中,C-490的溶剂化速率和旋转弛豫速率增加。在给定的W_(o)下,随着双子表面活性剂的间隔链长度的增加,每个表面活性剂分子与抗衡离子结合的水分子的数量的增加以及每个表面活性剂分子的块状水分子的数量的减少归因于溶剂化和旋转弛豫的速度较慢。不同状态的水的相对丰度也对反胶束的微环境起作用。因此,这里提出了不同水状态对复杂生物模拟系统动力学的综合影响。

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