Solid State Physics Division, Bhabha Atomic Research Centre, Mumbai 400085, India.
J Phys Chem B. 2013 May 23;117(20):6250-5. doi: 10.1021/jp401831y. Epub 2013 May 6.
Micellar dynamics in sodium dodecyl benzene sulfonate (SDBS) is studied using quasi-elastic neutron scattering (QENS) technique. Results are compared with sodium dodecyl sulfate (SDS), a very similar surfactant except for the presence of a phenyl ring in SDBS. SDBS is a very important system for various industrial usages and variety of other applications. The aim here is to investigate the effect of molecular architecture of the surfactant molecule on micellar dynamics. Analysis of the QENS data showed that there exists two distinct motions in both of the micellar systems: whole micellar motion or global motion and the internal motion of the monomer within the micelles. The global diffusion associated with the whole micelle is found to be Fickian in nature. The diffusion coefficient corresponding to the global motion is found to be significantly lower for SDBS than SDS micelles. As far as internal motion is concerned, the structure factor indicates that the alkyl chains are more flexible in SDS compared with SDBS. Similar behavior is also reported in a recent molecular-dynamics simulation study. Detailed analysis showed that a localized translational diffusion model in which the hydrogen atoms undergo diffusion within a sphere could describe the internal motions in both the micelles. Diffusion coefficients corresponding to internal motions is found to be lower in the case of SDBS micelles compared with SDS micelles, implying that internal motions in SDBS micelles are relatively hindered vis-a-vis SDS micelles. This could be understood in terms of denser packing in SDBS micelles due to the presence of π-stacking.
使用准弹性中子散射(QENS)技术研究了十二烷基苯磺酸钠(SDBS)中的胶束动力学。将结果与十二烷基硫酸钠(SDS)进行了比较,除了 SDBS 中存在苯环外,SDS 是一种非常相似的表面活性剂。SDBS 是各种工业用途和各种其他应用的非常重要的系统。这里的目的是研究表面活性剂分子的分子结构对胶束动力学的影响。QENS 数据分析表明,在这两种胶束系统中都存在两种不同的运动:整个胶束运动或整体运动和胶束内单体的内部运动。与整个胶束相关的整体扩散被发现具有本征的菲克扩散性质。与 SDS 胶束相比,SDBS 胶束的整体运动对应的扩散系数明显较低。就内部运动而言,结构因子表明,与 SDBS 相比,SDS 中的烷基链更灵活。最近的分子动力学模拟研究也报告了类似的行为。详细分析表明,氢原子在球体中发生扩散的局部平移扩散模型可以描述两种胶束中的内部运动。与 SDS 胶束相比,SDBS 胶束中内部运动的扩散系数较低,这表明 SDBS 胶束中的内部运动相对于 SDS 胶束受到相对阻碍。这可以用由于π堆积导致 SDBS 胶束中更密集的堆积来理解。