Departament d'Enginyeria Química, Universitat de Barcelona, Martí i Franqués 1, 08028 Barcelona, Spain.
J Colloid Interface Sci. 2012 Jun 15;376(1):133-9. doi: 10.1016/j.jcis.2012.02.063. Epub 2012 Mar 7.
The influence of different dilution procedures on the properties of oil-in-water (O/W) nano-emulsions obtained by dilution of oil-in-water (O/W) and water-in-oil (W/O) microemulsions has been studied. The system water/SDS/cosurfactant/dodecane with either hexanol or pentanol as cosurfactant was chosen as model system. The dilution procedures consisted of adding water (or microemulsion) stepwise or at once over a microemulsion (or water). Starting emulsification from O/W microemulsions, nano-emulsions with droplet diameters of 20 nm are obtained, independently on the microemulsion composition and the dilution procedure used. In contrast, starting emulsification from W/O microemulsions, nano-emulsions are only obtained if the emulsification conditions allow reaching the equilibrium in an O/W microemulsion domain during the process. These conditions are achieved by stepwise addition of water over W/O microemulsions with O/S ratios at which a direct microemulsion domain is crossed during emulsification. The nature of the alcohol used as cosurfactant has been found to play a key role on the properties of the nano-emulsions obtained: nano-emulsions in the system using hexanol as cosurfactant are smaller in size, lower in polydispersity, and have a higher stability than those with pentanol.
研究了通过稀释油包水(O/W)和水包油(W/O)微乳液来获得 O/W 纳米乳液时,不同稀释程序对其性质的影响。选择了以十六醇或正戊醇为助表面活性剂的水/SDS/助表面活性剂/正十二烷体系作为模型体系。稀释程序包括逐步加水(或微乳液)或一次加入微乳液(或水)。从 O/W 微乳液开始乳化,可以得到粒径为 20nm 的纳米乳液,这与微乳液的组成和使用的稀释程序无关。相比之下,如果乳化条件允许在过程中达到 O/W 微乳液区域的平衡,则可以从 W/O 微乳液开始乳化得到纳米乳液。通过逐步向 O/S 比在乳化过程中穿过直接微乳液区域的 W/O 微乳液中加水来实现这些条件。发现所用醇的性质在获得的纳米乳液的性质中起着关键作用:使用十六醇作为助表面活性剂的体系中的纳米乳液的粒径更小、多分散性更低、稳定性更高。