Han Songling, An Huijie, Tao Hui, Li Lanlan, Qi Yuantong, Ma Yongchang, Li Xiaohui, Wang Ruibing, Zhang Jianxiang
Department of Pharmaceutics, College of Pharmacy, Third Military Medical University, Chongqing 400038, China.
Institute of Materia Medica, College of Pharmacy, Third Military Medical University, Chongqing 400038, China.
Chem Commun (Camb). 2018 Mar 28;54(25):3174-3177. doi: 10.1039/c8cc00016f. Epub 2018 Mar 12.
We demonstrate that the traditional emulsification theory can be enriched by a self-assembly approach, in which hydrophilic copolymers with one block exhibiting noncovalent forces with the oil phase self-assemble at the oil-water interface, thereby reducing interfacial tension and forming emulsions. This approach was established using affinity diblock copolymers that can interact with oil molecules through electrostatic interactions or hydrogen-bonding. Nanoemulsions with excellent stability were successfully obtained simply via vortexing. The self-assembled emulsions showed unexpected catastrophic phase inversion, further extending the phase structures to bicontinuous and reverse emulsions. Complex emulsions could also be fabricated by this strategy. In addition, the thus prepared nanoemulsions can be used to engineer different nanomaterials.
我们证明,传统的乳化理论可以通过自组装方法得到丰富,在该方法中,具有一个嵌段与油相表现出非共价力的亲水性共聚物在油水界面处自组装,从而降低界面张力并形成乳液。这种方法是使用能够通过静电相互作用或氢键与油分子相互作用的亲和性二嵌段共聚物建立的。仅通过涡旋就成功获得了具有优异稳定性的纳米乳液。自组装乳液表现出意想不到的灾难性相转变,进一步将相结构扩展到双连续乳液和反相乳液。通过这种策略也可以制备复合乳液。此外,如此制备的纳米乳液可用于设计不同的纳米材料。