Key Lab of Organic Optoelectronics and Molecular Engineering, Department of Chemistry, Tsinghua University, Beijing 100084, PR China.
Langmuir. 2012 Oct 16;28(41):14567-72. doi: 10.1021/la303272b. Epub 2012 Oct 1.
The imine bond, a kind of dynamic covalent bond, is used to bind two bolaform amphiphiles together with spacers, yielding H-shaped supra-amphiphiles. Micellar aggregates formed by the self-assembly of the H-shaped supra-amphiphiles are observed. When pH is tuned down from basic to slightly acidic, the benzoic imine bond can be hydrolyzed, leading to the dissociation of H-shaped supra-amphiphiles. Moreover, H-shaped supra-amphiphiles have a lower critical micelle concentration than their building blocks, which is very helpful in enhancing the stability of the benzoic imine bond being hydrolyzed by acid. The surface tension isotherms of the H-shaped supra-amphiphiles with different spacers indicate their twisty conformation at a gas-water interface. The study of H-shaped supra-amphiphiles can enrich the family of amphiphiles, and moreover, the pH-responsiveness may make them apply to controlled or targetable drug delivery in a biological environment.
亚胺键是一种动态共价键,用于将两个 bolaform 两亲分子用间隔物连接在一起,生成 H 型超两亲分子。观察到由 H 型超两亲分子自组装形成的胶束聚集体。当 pH 值从碱性调至微酸性时,苯亚胺键可发生水解,导致 H 型超两亲分子的解离。此外,H 型超两亲分子的临界胶束浓度低于其构筑单元,这有助于增强酸催化水解苯亚胺键的稳定性。具有不同间隔物的 H 型超两亲分子的表面张力等温线表明它们在气-水界面处呈扭曲构象。H 型超两亲分子的研究丰富了两亲分子家族,而且其对 pH 的响应性可能使它们适用于生物环境中可控或靶向药物输送。