Department of Chemistry, North-Eastern Hill University, Shillong, India.
Langmuir. 2012 Nov 13;28(45):15762-9. doi: 10.1021/la302876z. Epub 2012 Nov 2.
The dependence of critical micelle concentration (cmc) of sodium dioctylsulfosuccinate (AOT) on the amount of ethylene glycol (EG) in water + EG medium was reported to be unusual and different from that of other surfactants to the extent that the cmc of AOT in EG is lower than in water. It is yet to be understood why AOT behaves so in water + EG medium, although AOT is known to have some special properties. Hence in the present study cmc of AOT in water + EG medium in the range from 0 to 100% (by weight) EG is measured by using surface tension and fluorescence emission methods. In contrast to what was reported, this study revealed that with respect to EG amount the cmc of AOT follows the general trend and AOT has higher cmc in EG than in water. On the other hand, it was surprisingly found that a break in the surface tension isotherm occurs in the premicellar region when the amount of EG exceeds 50% rendering a bisigmoidal shape to the surface tension isotherm. UV spectral study showed that AOT and EG undergo hydrogen bonding in the premicellar region when the EG amount is ≥50% and this hydrogen bonding becomes less on adding NaCl. The density functional theory calculations also showed formation of hydrogen bonds between EG and AOT through the sulfonate group of AOT providing thereby support to the experimental findings. The calculations predicted a highly stable AOT-EG-H(2)O trimer complex with a binding energy of -37.93 kcal mol(-1). The present system is an example, which is first of its kind, of a case where hydrogen bonding with surfactant and solvent molecules results in a surface tension break.
报道称,二辛基琥珀酸磺酸钠(AOT)的临界胶束浓度(cmc)对水+乙二醇(EG)介质中乙二醇(EG)量的依赖性不同寻常,与其他表面活性剂不同,AOT 在 EG 中的 cmc 低于在水中的 cmc。尽管 AOT 具有一些特殊性质,但尚不清楚为什么 AOT 在水+EG 介质中表现如此,因此在本研究中,通过表面张力和荧光发射方法测量了 AOT 在水+EG 介质中从 0 到 100%(重量)EG 的 cmc。与之前报道的情况相反,本研究表明,就 EG 量而言,AOT 的 cmc 遵循一般趋势,AOT 在 EG 中的 cmc 高于在水中的 cmc。另一方面,令人惊讶的是,当 EG 量超过 50%时,在胶束前区会发生表面张力等温线的中断,从而使表面张力等温线呈现出双 S 形。紫外光谱研究表明,当 EG 量≥50%时,AOT 和 EG 在胶束前区发生氢键相互作用,而在加入 NaCl 时氢键作用会减弱。密度泛函理论计算还表明,通过 AOT 的磺酸盐基团,EG 和 AOT 之间形成氢键,从而为实验结果提供支持。该计算预测了一个高度稳定的 AOT-EG-H(2)O 三聚体复合物,其结合能为-37.93 kcal mol(-1)。本系统是首例由于与表面活性剂和溶剂分子的氢键作用导致表面张力中断的系统。