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首页> 外文期刊>Chemistry, an Asian journal >Interconvertible Self-Assembly and Rheological Properties of Planar Bilayers and Vesicle Gels in Anionic/Nonionic (CF/CH) Surfactant Solutions
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Interconvertible Self-Assembly and Rheological Properties of Planar Bilayers and Vesicle Gels in Anionic/Nonionic (CF/CH) Surfactant Solutions

机译:阴离子/非离子(CF / CH)表面活性剂溶液中平面双层膜和囊泡凝胶的可相互转换的自组装和流变特性

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摘要

The surface and bulk properties of aqueous mixtures of nonionic tetraethylene glycol monododecyl ether (C_(12)EO_4) and anionic perfluorolauric acid (PFLA) were studied. These mixtures exhibited pronounced synergistic effects in terms of their mixed micellization and rheological properties. Only one type of mixed micelle is formed in dilute mixed solutions. At low PFLA content, with increasing the total surfactant concentration, short thread-like micelles grow to form larger discs. On increasing the amount of PFLA, owing to the fact that the fluctuant planar bilayers of nonionic C_(12)EO_4 become charged, vesicle gels that are comprised of densely packed unilamellar and multilamellar vesicles spontaneously form, in which the fluorocarbon chains in the bilayers are in a fluid state at room temperature. The elastic properties and the yield stress of the lamellar solutions largely increase upon the addition of small amounts of PFLA and they then pass through a maximum at a saturation of effective membrane charge density. Interestingly, increasing the pH value of the gels causes a backward transition from stiff vesicles to flexible planar bilayers. On increasing the amount of NaOH, the bilayers exhibit greater flexibility, owing to the decrease in membrane charges, along with a large decrease in the solution viscosity and their elastic properties. The combination of strong stability of the vesicle gels with the interconvertible transition of bilayers and vesicles is expected to be of practical use for controlled drug delivery and release.
机译:研究了非离子型四乙二醇单十二烷基醚(C_(12)EO_4)和阴离子全氟月桂酸(PFLA)的水性混合物的表面和体积特性。这些混合物在混合胶束化和流变性方面表现出明显的协同作用。在稀混合溶液中仅形成一种类型的混合胶束。在低PFLA含量下,随着总表面活性剂浓度的增加,短线状胶束会生长形成较大的圆盘。随着PFLA含量的增加,由于非离子C_(12)EO_4的波动的平面双层带电,自发形成了由紧密堆积的单层和多层囊泡组成的囊泡凝胶,其中双层中的碳氟链是在室温下处于流体状态。层状溶液的弹性和屈服应力在添加少量PFLA后会大大增加,然后在有效膜电荷密度饱和时通过最大值。有趣的是,增加凝胶的pH值会导致从硬囊泡向柔性平面双层的反向过渡。随着NaOH量的增加,双层膜表现出更大的柔韧性,这是由于膜电荷的减少,以及溶液粘度及其弹性性能的大幅下降。囊泡凝胶的强稳定性与双层和囊泡的可相互转换的过渡相结合,有望在控制药物的递送和释放中实用化。

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