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Particle size analysis of concentrated phospholipid microemulsions: I. Total intensity light scattering

机译:浓缩磷脂微乳液的粒度分析:I.总强度光散射

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摘要

Water-in-oil phospholipid microemulsions prepared from a constant total surfactant/cosurfactant concentration of 25 wt% at four different lecithin/alcohol weight ratios (Km of 1∶1, 1.5∶1, 1.77∶1, and 1.94∶1) and containing water concentrations (or volume fractions) ranging from 2.0 to 26 wt% (or 0.04 to 0.26) have been examined at 298 K using total intensity light scattering. The data obtained were analysed using the hard-sphere model of Percus-Yevick, modified to account for the partitioning of the alcohol between the various phases. The light-scattering results showed that, regardless of the Km or the alcohol used, a minimum water concentration of at least 9 wt% was required for the formation of a microemulsion; although this value was reasonably constant for each of the alcohols investigated, there was a tendency for a slightly higher concentration of water to be required for microemulsion formation at higher Km values. Simple calculations suggested that a microemulsion was formed only when sufficient water was present to satisfy the hydration of both the phospholipid head groups and the hydroxyl groups of the cosurfactant associated with the droplet. At water concentrations lower than this minimum value, a cosolvent system was observed. In all systems above this minimum concentration, as the concentration of water increased, the size of the microemulsion droplets also increased. Surprisingly, however, there was little difference in the size of the microemulsion droplets obtained with the different alcohols, regardless of the Km, although for a particular alcohol there was some indication that the higher Km systems produced the slightly smaller droplets for an equivalent water concentration. There was also a suggestion that the more hydrophobic alcohols produced slightly smaller droplets than the more polar alcohols at the same Km.
机译:由在四种不同的卵磷脂/醇重量比(Km为1:1、1.5:1、1.77:1和1.94:1)下恒定的表面活性剂/助表面活性剂的总浓度为25 wt%制备的油包水型磷脂微乳液使用总强度光散射在298 K下检查了2.0至26 wt%(或0.04至0.26)范围内的水浓度(或体积分数)。使用Percus-Yevick的硬球模型对获得的数据进行了分析,该模型经过修改以考虑到醇在各个相之间的分配。光散射结果表明,无论使用何种Km或酒精,微乳液的形成都需要至少9 wt%的最低水浓度。尽管对于所研究的每种醇来说,该值是合理恒定的,但是在较高的Km值下,形成微乳液所需的水的浓度趋于稍高。简单的计算表明,仅当存在足够的水以满足与液滴结合的磷脂头基和辅助表面活性剂的羟基水合时,才形成微乳液。在低于该最小值的水浓度下,观察到助溶剂体系。在高于该最小浓度的所有系统中,随着水浓度的增加,微乳液液滴的尺寸也增加。然而,令人惊讶的是,不管Km如何,用不同的醇获得的微乳液液滴的尺寸几乎没有差别,尽管对于一种特定的醇有一些迹象表明,在相同的水浓度下,较高的Km体系产生的液滴稍小。 。也有人建议,在相同的Km下,疏水性更高的醇产生的液滴比极性更大的醇产生的液滴稍小。

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