Mitra Rajib Kumar, Sinha Sudarson Sekhar, Verma Pramod Kumar, Pal Samir Kumar
Unit for Nano Science & Technology, Department of Chemical, Biological & Macromolecular Sciences, S.N. Bose National Center for Basic Sciences, Block JD, Sector III, Salt Lake, Kolkata, India.
J Phys Chem B. 2008 Oct 16;112(41):12946-53. doi: 10.1021/jp803585q. Epub 2008 Sep 20.
In this contribution, we attempt to correlate the change in water dynamics in a reverse micellar (RM) core caused by the modification of the interface by mixing an anionic surfactant, sodium bis(2-ethylhexyl) sulfosuccinate (AOT), and a nonionic surfactant, tetraethylene glycol monododecyl ether (Brij-30), at different proportions, and its consequent effect on the reactivity of water, measured by monitoring the solvolysis reaction of benzoyl chloride (BzCl). The dimension of the RM droplets at different mixing ratios of AOT and Brij-30 (X(Brij-30)) has been measured using dynamic light scattering (DLS) technique. The physical properties of the RM water have been determined using Fourier transform infrared spectroscopy (FTIR) and compressibility studies, which show that with increasing X(Brij-30), the water properties tend toward that of bulk-like water. The solvation dynamics, probed by coumarin 500 dye, gets faster with X(Brij-30). The rotational anisotropy studies along with a wobbling-in-cone analysis show that the probe experiences less restriction at higher X(Brij-30). The kinetics of the water-mediated solvolysis also gets faster with X(Brij-30). The increased rate of solvolysis has been correlated with the accelerated solvation dynamics, which is another consequence of surfactant headgroup-water interaction.
在本论文中,我们尝试将由不同比例混合阴离子表面活性剂双(2-乙基己基)磺基琥珀酸钠(AOT)和非离子表面活性剂四甘醇单十二烷基醚(Brij-30)对界面进行修饰所引起的反胶束(RM)核中水动力学的变化,与通过监测苯甲酰氯(BzCl)的溶剂解反应来测量的水反应活性的相应影响关联起来。使用动态光散射(DLS)技术测量了AOT和Brij-30不同混合比例(X(Brij-30))下RM液滴的尺寸。利用傅里叶变换红外光谱(FTIR)和压缩性研究确定了RM水的物理性质,结果表明随着X(Brij-30)的增加,水的性质趋向于类似本体水的性质。用香豆素500染料探测的溶剂化动力学随着X(Brij-30)的增加而加快。旋转各向异性研究以及锥体内摆动分析表明,在较高的X(Brij-30)下,探针受到的限制较小。水介导的溶剂解动力学也随着X(Brij-30)的增加而加快。溶剂解速率的增加与加速的溶剂化动力学相关,这是表面活性剂头基与水相互作用的另一个结果。