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A gemini surfactant-containing system with abundant self-assembly morphology and rheological behaviors tunable by photoinduction

机译:含双子表面活性剂的体系,具有丰富的自组装形态和可通过光诱导调节的流变行为

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Photoresponsive micellar systems with adjustable aggregate morphologies and rheological properties may be useful in a number of fields such as in microfluidics, controlled release, and sensors. However, the complexity and great difficulty of synthesising photosensitive molecules hamper their practical applications to a significant degree. In this study, we constructed a novel photoinduced self-assembly system by introducing the photoresponsive derivative trans -2-methoxy-cinnamate ( trans -OMCA) into the gemini surfactant N , N ′-bis(dodecyldimethyl)-1,2-ethane diammonium dibromide (12-2-12·2Br ~(?) ) solutions. The system displays abundant phase behaviors, and the long worm-like micelles, vesicles, as well as an aqueous two-phase system (ATPS) are observed in the 12-2-12·2Br ~(?) / trans -OMCA mixed system even at lower surfactant concentrations. The UV-responsive behavior of the formed vesicles and the worm-like micelles is investigated systematically. The results have shown that OMCA undergoes photoisomerization from the trans -form to the cis -form through UV light irradiation that alters the molecular packing at the micellar interface and thus leads to the transformation of micellar morphologies. The long worm-like micelles will turn into much shorter units when the sample is exposed to 365 nm UV light accompanied by a decrease in solution viscosity by more than an order of magnitude. The formed vesicle system, however, can be utilized to generate a multi-state self-assembly structure, including a worm-like micelle and a small spherical micelle, depending on the UV irradiation time. The morphologies of micelles in a 12-2-12·2Br ~(?) / trans -OMCA mixed system can be tailored by adjusting the system composition and the duration of UV light irradiation. Correspondingly, the rheological behavior of the 12-2-12·2Br ~(?) / trans -OMCA mixed system can be purposely tuned. The light-induced system with abundant self-assembly behaviors and tunable rheological properties would widen the potential application of gemini surfactants in drug delivery, smart fluids, and materials science.
机译:具有可调节的聚集物形态和流变性质的光敏胶束系统在许多领域中可能是有用的,例如在微流体,控释和传感器中。但是,合成光敏分子的复杂性和困难很大程度地阻碍了它们的实际应用。在这项研究中,我们通过将光敏衍生物反式-2-甲氧基肉桂酸酯(反式-OMCA)引入双子表面活性剂N,N'-双(十二烷基二甲基)-1,2-乙烷二铵中,构建了一种新型的光诱导自组装系统。二溴化物(12-2-12·2Br〜(?))溶液。该体系表现出丰富的相行为,在12-2-12·2Br〜(?)/反式-OMCA混合体系中观察到长的蠕虫状胶束,囊泡以及水相两相体系(ATPS)。即使在较低的表面活性剂浓度下也是如此。系统地研究了形成的囊泡和蠕虫状胶束的紫外线响应行为。结果表明,OMCA通过紫外光照射经历了从反式到顺式的光异构化,这改变了胶束界面处的分子堆积,从而导致了胶束形态的转变。当样品暴露于365 nm紫外线下时,长的蠕虫状胶束将变成更短的单位,同时溶液粘度下降幅度超过一个数量级。然而,所形成的囊泡系统可用于产生多态自组装结构,包括蠕虫状的胶束和小的球形胶束,这取决于紫外线照射时间。可以通过调节体系组成和紫外线照射时间来定制12-2-12·2Br〜(α)/反式-OMCA混合体系中的胶束形态。相应地,可以有目的地调节12-2-12·2Br〜(α)/反式-OMCA混合体系的流变行为。具有丰富的自组装行为和可调节的流变性的光诱导系统将扩大双子表面活性剂在药物输送,智能流体和材料科学中的潜在应用。

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