State Key Laboratory of Bioreactor Engineering , East China University of Science and Technology , 130 Meilong Road , Shanghai 200237 , P. R. China.
Collaborative Innovation Center of Chemical Science and Engineering (Tianjin) , 92 Weijin Road , Nankai District, Tianjin 300072 , P. R. China.
ACS Appl Mater Interfaces. 2019 Aug 7;11(31):28228-28235. doi: 10.1021/acsami.9b11445. Epub 2019 Jul 26.
Enclosed films, also called capsules, bearing an ultrathin and robust nanoshell have sparked much interest for use in many applications, for which facile preparation methods are urgently pursued. Inspired by the pH-programmed adhesion/cohesion of mussel-secreted foot proteins, polyphenol/polyamine capsules with an ultrathin and robust nanoshell are fabricated through a pH-switched assembly on sacrificial calcium carbonate (CaCO) templates. Polyphenols adhere to the templates at pH 6.0 and rapidly cohere with polyamines at pH 8.0. The pH-switched assembly process is accomplished in only a few minutes where multiple instances of electrostatic interactions and chemical conjugation between polyphenols and polyamines occur. As a result, the capsules exhibit a nanoshell thickness of ∼10 nm and a superior mechanical strength of ∼1.575 GPa (elasticity modulus). Cell mimics are prepared through encasing enzymes in the lumen and present an activity recovery of ∼70% along with little activity decline during reuse. Amine or phenolic groups on the nanoshell of capsules are then applied to induce the generation of titania or silver nanoparticles, which may expand the applications of the capsules to the photo- and biorelated realms. Our study not only deepens the understanding of the adhering process of mussels but also offers a generic method toward functional materials for diverse applications.
包裹膜,也称为胶囊,具有超薄且坚固的纳米壳,因此在许多应用中引起了广泛关注,目前迫切需要开发简便的制备方法。受贻贝分泌的足部蛋白的 pH 编程粘附/内聚的启发,通过牺牲碳酸钙 (CaCO) 模板上的 pH 切换组装,制备了具有超薄且坚固纳米壳的多酚/多胺胶囊。在 pH 6.0 时,多酚附着在模板上,并在 pH 8.0 时迅速与多胺凝聚。pH 切换组装过程仅需几分钟即可完成,在此过程中,多酚和多胺之间会发生多次静电相互作用和化学共轭。因此,胶囊的纳米壳厚度约为 10nm,机械强度高达 1.575GPa(弹性模量)。通过将酶封装在腔室内制备细胞模拟物,其活性回收率约为 70%,并且在重复使用过程中活性下降很小。然后,胶囊纳米壳上的胺基或酚基被应用于诱导二氧化钛或银纳米颗粒的生成,这可能会将胶囊的应用扩展到光和生物相关领域。我们的研究不仅加深了对贻贝粘附过程的理解,还为各种应用的功能性材料提供了一种通用方法。