首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Self-Assembly and Rheological Properties of a Pseudogemini Surfactant Formed in a Salt-Free Catanionic Surfactant Mixture in Water
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Self-Assembly and Rheological Properties of a Pseudogemini Surfactant Formed in a Salt-Free Catanionic Surfactant Mixture in Water

机译:在水中形成无盐阳离子表面活性剂混合物的假双子表面活性剂的自组装和流变特性

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The surface and bulk properties of bola-type dicarboxylic acid (sebacic acid, SA) and zwitterionic surfactant tetradecyldimethylamine oxide (C(14)DMAO) mixtures in aqueous solutions were studied. Surface tension measurements indicate a pronounced synergistic effect between SA and C14DMAO. In bulk aqueous solutions, rich phase behavior was observed with a varied SA-to-C(14)DMAO ratio (rho) and a total surfactant concentration. Typically at rho = 0.5, a novel pseudogemini surfactant (C-14-S-C-14) forms, driven by electrostatic interaction and hydrogen bonding. The C-14-S-C-14/H2O system exhibits rich phase behavior induced by the transition of aggregates. With increasing concentration of C-14-S-C-14, one can observe a viscous L-1 phase, an L-1/L-alpha two-phase region where a birefringent L-alpha phase is on the top of an L-1 phase, a single L-alpha phase, and finally a mixture of an L-alpha phase and a precipitate. Microstructures formed in the L-alpha phases were determined by freeze fracture transmission electron microscopy (FF-TEM) and cryogenic-transmission electron microscopy (cryo-TEM) observations. Polymorphic aggregation behavior was observed with the formation of a variety of bilayer structures including unilamellar vesicles, onions, and open and hyperbranched bilayers. Rheological measurements showed that the L-alpha phases are viscoelastic and sensitive to temperature where a quick loss of viscoelasticity was observed at elevated temperature.
机译:研究了硼酸型二羧酸(癸二酸,SA)和两性离子表面活性剂十四烷基二甲基氧化胺(C(14)DMAO)混合物在水溶液中的表面和体积特性。表面张力测量表明SA和C14DMAO之间有明显的协同作用。在散装水溶液中,观察到富相行为,其中SA-C(14)DMAO比率(rho)和总表面活性剂浓度变化。通常在rh = 0.5时,由静电相互作用和氢键驱动形成新型假双子表面活性剂(C-14-S-C-14)。 C-14-S-C-14 / H2O系统表现出由聚集体的转变引起的丰富的相行为。随着C-14-SC-14浓度的增加,人们可以观察到粘性L-1相,即L-1 / L-alpha两相区域,其中双折射L-alpha相位于L-1顶部相,单一的L-α相,最后是L-α相和沉淀物的混合物。通过冷冻断裂透射电子显微镜(FF-TEM)和低温透射电子显微镜(cryo-TEM)观察来确定在L-α相中形成的微观结构。随着各种双层结构的形成(包括单层囊泡,洋葱,开放和超支化双层)的形成,观察到多态聚集行为。流变学测量表明,L-α相是粘弹性的,并且对温度敏感,在高温下观察到粘弹性快速损失。

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