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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Effect of Hydroxyl Group Substituted Spacer Group of Cationic Gemini Surfactants on Solvation Dynamics and Rotational Relaxation of Coumarin-480 in Aqueous Micelles
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Effect of Hydroxyl Group Substituted Spacer Group of Cationic Gemini Surfactants on Solvation Dynamics and Rotational Relaxation of Coumarin-480 in Aqueous Micelles

机译:阳离子双子表面活性剂的羟基取代间隔基对胶束水溶液中香豆素480溶解动力学和旋转弛豫的影响

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摘要

The solvation dynamics and rotational relaxation of Coumarin 480 (C-480) have been investigated in the micelles of a series of gemini surfactants, 12-4(OH)"-12 (n = 0, 1, and 2), with increasing hydroxyl group substitution within the spacer group. Steady-state and time-correlated single photon counting (TCSPC) fluorescence spectroscopic techniques have been used to carry out such study. Steady-state and TCSPC fluorescence data support the location of probe molecule at the Stern layer. The solvation dynamics is found to be slower on hydroxyl substitution of spacer group due to the formation of hydrogen bonds between water molecules and hydroxyl group(s) of spacer group. Such kind of hydrogen bonding protects the probe molecule from its contact with water molecules and also results in restricted mobility of water molecules. The average rotational relaxation time increases on increasing number of substituted hydroxyl group on a spacer group. It is because of formations of more and more close packed micelles and larger extent of intermolecular hydrogen bonding interactions between C-480 and hydroxyl group(s). For micelles of each of 12-4-12 and 12-4(OH)-12, the slow rotational relaxation is dominated by the lateral diffusion of the fluorophore along the spherical surface of the micelle. However, for 12-4(OH)2-12, the slow rotational relaxation is mainly due to the rotational motion of the micelle as a whole. Because of high microviscosity of micelles of 12-4(OH)2-12 and greater extent of hydrogen bonding interactions with C-480, the relaxation time corresponding to the lateral diffusion of the fluorophore is very high in this case.
机译:在一系列双子表面活性剂12-4(OH)“-12(n = 0、1和2)中,随着羟基的增加,已经研究了香豆素480(C-480)的溶剂化动力学和旋转弛豫。在间隔基团内的基团取代,稳态和时间相关的单光子计数(TCSPC)荧光光谱技术已用于进行此类研究,稳态和TCSPC荧光数据支持探针分子在Stern层的定位。由于在水分子和间隔基团的羟基之间形成氢键,间隔基的羟基取代的溶剂化动力学较慢,这种氢键保护了探针分子不与水分子和水分子接触。也导致水分子的迁移受到限制,平均旋转弛豫时间随间隔基上取代羟基的数目增加而增加,这是由于形成越来越多的氯填充的胶束和C-480与羟基之间更大程度的分子间氢键相互作用。对于12-4-12和12-4(OH)-12的每个胶束,缓慢的旋转弛豫主要由荧光团沿胶束球面的侧向扩散所决定。但是,对于12-4(OH)2-12,缓慢的旋转弛豫主要是由于胶束整体的旋转运动。由于12-4(OH)2-12的胶束具有较高的微粘度,并且与C-480的氢键相互作用程度更高,因此在这种情况下,与荧光团的横向扩散相对应的弛豫时间非常高。

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