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Light-scattering investigations on dilute nonionic oil-in-water microemulsions

机译:稀非离子水包油型微乳液的光散射研究

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摘要

Dilute 3-component nonionic oil-in-water microemulsions formulated with either a polyoxyethylene surfactant (C18:1E10 or C12E10) or the alkylamine-N-oxide surfactant, DDAO (C12AO), and containing either a triglyceride or an ethyl ester oil have been examined using dynamic and static lightscattering techniques. Analysis of the results showed distinct differences in the tested oil's mode of incorporation into the microemulsion droplets, with both the molecular volume of the oil and the hydrophobic chain length of the surfactant being important. For example, microemulsions formulated by C18:1E10 and containing one of the larger molecular volume oils (that is, either a triglyceride, Miglyol 812, or soybean oil) or the ethyl ester of fatty acid oil, ethyl oleate, exhibited first a decrease and then an increase in hydrodynamic size and surfactant aggregation number, suggesting that the asymmetric C18:1E10 micelles became spherical upon the addition of a small amount of oil and grew thereafter because of further oil being incorporated into the core of the spherical microemulsion droplet. A similar conclusion of sphericity could not be drawn for microemulsions stabilized by C18:1E10 and containing one of the oils smaller in molecular volume (namely tributyrin, ethyl butyrate, or ethyl caprylate) where neither the aggregation number nor the hydrodynamic radius changed much upon the addition of oil. This result suggested that these oils were preferentially located in the interfacial surfactant monolayer, behaving in much the same way as a cosurfactant. A different trend of results, however, was seen for microemulsions prepared using C12E10 and C12AO, most likely because these surfactants produced approximately spherical micelles. In this case, the microemulsions containing the oils larger in molecular volume tended to exhibit an increase in surfactant aggregation number and hydrodynamic size, suggesting the growth of spherical micelles, while the smaller oils (in particular ethyl butyrate) caused a significant decrease in surfactant aggregation number incompatible with their being incorporated into the centre of the droplet, suggesting that the oils were being located in the interfacial surfactant monolayer. These results suggest that the various oils are incorporated into the microemulsions in very different ways.
机译:已经用聚氧乙烯表面活性剂(C18:1E10或C12E10)或烷基胺-N-氧化物表面活性剂DDAO(C12AO)配制并含有甘油三酸酯或乙酯油的稀释的三组分非离子水包油微乳液使用动态和静态光散射技术进行了检查。结果分析表明,被测油掺入微乳液液滴的方式存在明显差异,油的分子体积和表面活性剂的疏水链长均很重要。例如,由C18:1E10配制并包含较大分子体积油中的一种(即甘油三酸酯,Miglyol 812或大豆油)或脂肪酸油的乙酯,油酸乙酯的微乳剂首先表现出降低和然后,流体动力学尺寸和表面活性剂聚集数增加,这表明不对称的C18:1E10胶束在添加少量油后变为球形,并在此后生长,因为进一步的油被掺入了球形微乳液液滴的核心。对于由C18:1E10稳定并且包含一种分子体积较小的油(即三丁酸甘油酯,丁酸乙酯或辛酸乙酯)的微乳液,无法得出球形度的类似结论,在该乳液中,聚集数和流体动力学半径都没有太大变化。加油。该结果表明这些油优选以与助表面活性剂几乎相同的方式位于界面活性剂单层中。然而,对于使用C12E10和C12AO制备的微乳液,发现了不同的结果趋势,这很可能是因为这些表面活性剂产生了近似球形的胶束。在这种情况下,包含分子体积较大的油的微乳液往往会显示出表面活性剂聚集数和流体力学尺寸的增加,表明球形胶束的生长,而较小的油(尤其是丁酸乙酯)则导致表面活性剂聚集的显着减少。与其结合到液滴中心不相容的数,表明这些油位于界面活性剂单层中。这些结果表明,各种油以非常不同的方式掺入微乳液中。

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