Johnsen Heidi, Schmid Ruth B
Department of Synthesis and Properties, SINTEF Materials and Chemistry, Trondheim, Norway.
J Microencapsul. 2007 Dec;24(8):731-42. doi: 10.1080/02652040701585179.
The encapsulation of organic liquids in polyurethane nanocapsules by interfacial miniemulsion polycondensation of isophorone diisocyanate and propanetriol has been performed. The influence of type and amount of encapsulated organic liquid has been studied and it was found that the encapsulation efficiency is dependent on the water solubility of the organic liquids, their interfacial tension against water and their compatibility with polyurethane. It was also shown how different types of surfactants and variations in pH and ionic strength of the continuous phase affected the stability during polymerization and the diameter of the miniemulsion droplets and the resulting nanocapsules. The long-chained anionic surfactant Disponil FES77 can be utilized over a larger pH range than SDS due to the contribution of steric stabilization. Relatively narrow size distributions were obtained.
通过异佛尔酮二异氰酸酯和丙三醇的界面微乳液缩聚反应,已实现将有机液体包裹于聚氨酯纳米胶囊中。研究了被包裹有机液体的类型和用量的影响,发现包封效率取决于有机液体的水溶性、其与水的界面张力以及与聚氨酯的相容性。还展示了不同类型的表面活性剂以及连续相pH值和离子强度的变化如何影响聚合过程中的稳定性、微乳液液滴的直径以及所得纳米胶囊的直径。由于空间位阻稳定作用,长链阴离子表面活性剂Disponil FES77比SDS可在更大的pH范围内使用。获得了相对较窄的粒径分布。