Shanghai Key Laboratory of Advanced Polymeric Materials, Key Laboratory for Ultrafine Materials of Ministry of Education, Frontiers Science Center for Materiobiology and Dynamic Chemistry, School of Materials Science and Engineering, East China University of Science and Technology, Shanghai, 200237, China.
Angew Chem Int Ed Engl. 2021 Aug 2;60(32):17707-17713. doi: 10.1002/anie.202106321. Epub 2021 Jul 1.
Hierarchical self-assembly is one of the most effective approaches to fabricate nature-inspired materials with subtle nanostructures. We report a distinct hierarchical self-assembly process of molecular double brushes (MDBs) with each graft site carrying a poly(azobenzene-acrylate) (PAzo) chain and a poly(ethylene oxide) (PEO) chain. Asymmetric tapered worm (ATW) nanostructures with chain-end reactivity assembling from the azobenzene-derived MDBs serve as primary subunits to prepare branched supermicelles by increasing water content (C ) in THF/water. Various natural Antedon-shaped multiarm worm-like aggregates (MWAs) can be created via the particle-particle connection of ATWs. Intriguingly, the azobenzene moieties undergo trans-cis isomerization upon UV irradiation and further promote a morphology evolution of MWAs. Multiscale supermicelles comprised of starfish shapes with differing central body and arm morphologies (e.g., compare to the biological specimens Luidia ciliaris and Crossaster papposus) were prepared by manipulating irradiation time.
分层自组装是制备具有细微纳米结构的仿生材料的最有效方法之一。我们报告了一种分子双刷(MDB)的独特分层自组装过程,每个接枝位点都携带一个聚(偶氮苯-丙烯酸酯)(PAzo)链和一个聚(氧化乙烯)(PEO)链。具有链端反应性的非对称锥形蠕虫(ATW)纳米结构由偶氮苯衍生的 MDB 组装而成,作为主要亚单位,通过增加四氢呋喃/水中的含水量(C)来制备支化超分子。通过 ATWs 的粒子-粒子连接,可以制备各种天然的海胆形多臂蠕虫状聚集体(MWAs)。有趣的是,偶氮苯部分在紫外光照射下经历顺反异构化,并进一步促进 MWAs 的形态演变。通过操纵照射时间,制备了具有不同中心体和臂形态的星形多尺度超分子(例如,与生物标本 Luidia ciliaris 和 Crossaster papposus 相比)。