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曲拉通-X-100和曲拉通-X-165胶束中的溶剂化动力学:胶束大小和水合作用的影响。

Solvation dynamics in triton-X-100 and triton-X-165 micelles: effect of micellar size and hydration.

作者信息

Kumbhakar Manoj, Nath Sukhendu, Mukherjee Tulsi, Pal Haridas

机构信息

Radiation Chemistry and Chemical Dynamics Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400 085, India.

出版信息

J Chem Phys. 2004 Sep 22;121(12):6026-33. doi: 10.1063/1.1784774.

Abstract

Dynamic Stokes' shift measurements using coumarin 153 as the fluorescence probe have been carried out to study solvation dynamics in two nonionic micelles, viz., triton-X-100 (TX-100) and triton-X-165 (TX-165). In both the micelles, the solvent relaxation dynamics is biexponential in nature. While the fast solvation time tau(s1) is seen to be almost similar for both the micelles, the slow solvation time tau(s2) is found to be appreciably smaller in TX-165 than in TX-100 micelle. Dynamic light scattering measurements indicate that the TX-165 micelles are substantially smaller in size than that of TX-100. Assuming similar core size for both the micelles, as expected from the similar chemical structures of the nonpolar ends for both the surfactants, the Palisade layer is also indicated to be substantially thinner for TX-165 micelles than that of TX-100. The aggregation number of TX-165 micelles is also found to be substantially smaller than that of TX-100 micelles. Fluorescence spectral studies of C153 dye in the two micelles indicate that the Palisade layer of TX-165 micelles is more polar than that of TX-100 micelles. Fluorescence anisotropy measurements indicate that the microviscosity in the Palisade layer of TX-165 micelles is also lower than that of TX-100 micelles. Based on these results it is inferred that the structure of the Palisade layer of TX-165 micelles is quite loose and have higher degree hydration in comparison to that of TX-100 micelles. Due to these structural differences in the Palisade layers of TX-165 and TX-100 micelles the solvation dynamics is faster in the former micelles than in the latter. It has been further inferred that in the present systems the collective response of the water molecules at somewhat away from the probes is responsible for the faster component of the solvation time, which does not reflect much of the structural changes of the micellar Palisade layer. On the contrary, the slower solvation time component, which is mainly due to the single particle response arising from water molecules adjacent to the probe in the micellar Palisade layer, is largely affected by the structural changes in the micellar Palisade layer.

摘要

使用香豆素153作为荧光探针进行了动态斯托克斯位移测量,以研究两种非离子胶束中的溶剂化动力学,即 Triton-X-100(TX-100)和 Triton-X-165(TX-165)。在这两种胶束中,溶剂弛豫动力学本质上都是双指数的。虽然两种胶束的快速溶剂化时间τ(s1)几乎相似,但发现TX-165中的慢速溶剂化时间τ(s2)明显小于TX-100胶束中的。动态光散射测量表明,TX-165胶束的尺寸明显小于TX-100。假设两种胶束的核心尺寸相似,这是基于两种表面活性剂非极性端的化学结构相似所预期的,还表明TX-165胶束的栅栏层也比TX-100的薄得多。还发现TX-165胶束的聚集数明显小于TX-100胶束。对两种胶束中C153染料的荧光光谱研究表明,TX-165胶束的栅栏层比TX-100胶束的极性更强。荧光各向异性测量表明,TX-165胶束栅栏层中的微粘度也低于TX-100胶束。基于这些结果推断,与TX-100胶束相比,TX-165胶束栅栏层的结构相当松散且水化程度更高。由于TX-165和TX-100胶束栅栏层的这些结构差异,前者胶束中的溶剂化动力学比后者更快。进一步推断,在本系统中,距离探针稍远的水分子的集体响应是溶剂化时间较快成分的原因,这并没有反映出胶束栅栏层的太多结构变化。相反,较慢的溶剂化时间成分主要是由于胶束栅栏层中与探针相邻的水分子产生的单粒子响应,它在很大程度上受胶束栅栏层结构变化的影响。

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