Wang Guoyong, Li Ping, Du Zhiping, Wang Wanxu, Li Guojin
†China Research Institute of Daily Chemical Industry, Taiyuan Shanxi 030001, P.R. China.
‡Institute of Resources and Environment Engineering, Shanxi University, Taiyuan Shanxi 030006, P.R. China.
Langmuir. 2015 Aug 4;31(30):8235-42. doi: 10.1021/acs.langmuir.5b02062. Epub 2015 Jul 23.
Six novel siloxane-based surface-active ionic liquids (SAILs)--siloxane ammonium carboxylate [Si(n)N(2)-CA(1), (n = 3, 4)]--were designed and synthesized. Their melting points, surface activities, and self-aggregation behavior in aqueous solution were studied. The results showed that because of the bulky hydrophobic siloxane chains at the end of the tail, all six siloxane-based SAILs are room-temperature ionic liquids (RT-SAILs). The introduction of the siloxane group can reduce the melting point of ionic liquids to below room temperature and can promote the micellization and aggregation behavior more efficiently. These siloxane-based SAILs can greatly reduce the surface tension of water, as shown by the critical aggregation concentration (γCAC) values of 20 mN·m(-1); all six siloxane RT-SAILs can form a vesicle spontaneously in aqueous solution, indicating potential uses as model systems for biomembranes and vehicles for drug delivery.
设计并合成了六种新型的基于硅氧烷的表面活性离子液体(SAILs)——硅氧烷羧酸铵[Si(n)N(2)-CA(1), (n = 3, 4)]。研究了它们的熔点、表面活性以及在水溶液中的自聚集行为。结果表明,由于尾部末端存在庞大的疏水硅氧烷链,所有六种基于硅氧烷的SAILs均为室温离子液体(RT-SAILs)。硅氧烷基团的引入可将离子液体的熔点降低至室温以下,并能更有效地促进胶束化和聚集行为。这些基于硅氧烷的SAILs能大幅降低水的表面张力,临界聚集浓度(γCAC)值为20 mN·m(-1);所有六种硅氧烷RT-SAILs均可在水溶液中自发形成囊泡,表明其作为生物膜模型系统和药物递送载体具有潜在用途。