论文标题

饱和胶束网络的相位分离及其对纳米乳化的潜在应用

Phase separation of saturated micellar network and its potential applications for nanoemulsification

论文作者

Georgiev, M. T., Aleksova, L. A., Kralchevsky, P. A., Danov, K. D.

论文摘要

饱和胶束网络的相分离,由于分支胶束的交联,在阴离子表面活性剂钠laurylethersulthersulfate(SLES)和ZWITTRICION COCAMIDOPYPOPLOPYLOPYLOPYLOPLOPLOPLOPLOPLOPYBYBETAINE(CAPB)的混合溶液中建立。饱和网络以液滴的形式出现,该液滴比容器底部的水和沉积物重。在MG2+的情况下,沉积后的滴剂结合并形成一个单独的多连接胶束相 - 超级巨型表面活性剂胶束。在此阶段,流变流曲线显示了牛顿和剪切薄的区域。牛顿地区的外观/消失标志着饱和网络的形成开始。在多连接的胶束相中添加小有机分子(香水)导致几乎自发地形成油中的水中纳米乳液。多连接胶束相的纳米乳化能力随着油分子体积的增加而降低。可以预期网络连接在纳米乳化过程中的可能作用。多连接的胶束相的性质可以在提取和分离过程,药物/主动递送以及最小能量输入中的纳米乳化中找到应用。

Phase separation of saturated micellar network, as a result of cross-linking of branched micelles is established in mixed solutions of the anionic surfactant sodium laurylethersulfate (SLES) and the zwitterionic cocamidopropyl betaine (CAPB) in the presence of divalent counterions: Ca2+, Zn2+ and Mg2+. The saturated network appears in the form of droplets, which are heavier than water and sediment at the bottom of the vessel. In the case of Mg2+, the sedimented drops coalesce and form a separate multiconnected micellar phase - a supergiant surfactant micelle. For this phase, the rheological flow curves show Newtonian and shear-thinning regions. The appearance/disappearance of the Newtonian region marks the onset of formation of saturated network. The addition of small organic molecules (fragrances) to the multiconnected micellar phase leads to an almost spontaneous formation of oil-in-water nanoemulsion. The nanoemulsification capacity of the multiconnected micellar phase decreases with the rise of the volume of the oil molecule. A possible role of the network junctions in the nanoemulsification process can be anticipated. The properties of the multiconnected micellar phases could find applications in extraction and separation processes, in drug/active delivery, and for nanoemulsification at minimal energy input.

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