Analytical Science Research Laboratories, Kao Corporation , 1334, Minato , Wakayama-Shi, Wakayama 640-8580 , Japan.
Langmuir. 2019 Aug 20;35(33):10877-10884. doi: 10.1021/acs.langmuir.9b01607. Epub 2019 Aug 7.
The lamellar phase produced by surfactants with water exhibits several subphases, such as hydrated crystal (), gel (), tilted gel (), and liquid crystal () phases, depending on temperature, pressure, and hydration. The dynamics of the surfactant molecules in these phases are still unclear. In the present study, we investigate the translational and conformational dynamics of sodium linear alkylbenzene sulfonate (LAS) molecules in the , , and phases. In the phase, the lateral diffusion of LAS is as fast as that found for phospholipid bilayers in the phase. The diffusion coefficient was undetectably small for the and phases. The conformation of LAS in the phase relaxes very rapidly, whereas those in the and phases relax very slowly. The time scale of the relaxations greatly depends on the segment of the LAS molecule for the latter two phases. The relaxation time for the SO head group and benzene ring of LAS was much longer than that for alkyl chains. Conformational pattern analyses of LAS alkyl chains revealed that the high fraction of the gauche conformation for the odd-numbered C-C bonds aligns the chain parallel to the bilayer normal and is the main origin of the different relaxation times for different segments in the chain. In the , , and phases, the orientations of the SO group and the benzene ring are locked by the salt bridge among SO groups and sodium ions. As a result, the orientational order found for the C-C bonds in the LAS alkyl chains is kept even in the phase.
由表面活性剂与水形成的层状相表现出几种亚相,例如水合晶体 ( )、凝胶 ( )、倾斜凝胶 ( ) 和液晶 () 相,这取决于温度、压力和水合作用。这些相中的表面活性剂分子的动力学仍然不清楚。在本研究中,我们研究了在、和相中的线性直链烷基苯磺酸钠 (LAS) 分子的平移和构象动力学。在相中,LAS 的侧向扩散速度与磷脂双层在相中的扩散速度一样快。对于和相,扩散系数小到无法检测。LAS 在相中的构象迅速松弛,而在和相中的构象则非常缓慢地松弛。弛豫的时间尺度极大地取决于 LAS 分子的片段对于后两个相。LAS 的 SO 头基和苯环的弛豫时间比烷基链长得多。LAS 烷基链的构象模式分析表明,奇数 C-C 键的高比例 gauche 构象使链平行于双层法线,这是链中不同片段弛豫时间不同的主要原因。在、和相,SO 基团和苯环的取向被 SO 基团之间的盐桥和钠离子锁定。结果,即使在相,LAS 烷基链中 C-C 键的取向有序性也得以保持。