Xu Binbin, Qian Hongyu, Lin Shaoliang
Shanghai Key Laboratory of Advanced Polymeric Materials, Key Laboratory for Ultrafine Materials of Ministry of Education, School of Materials Science and Engineering, East China University of Science and Technology, Shanghai 200237, China.
ACS Macro Lett. 2020 Mar 17;9(3):404-409. doi: 10.1021/acsmacrolett.0c00079. Epub 2020 Feb 28.
Asymmetric macromolecular double-brushes (MDBs) are composed of two different side chains grafted on a linear backbone, possessing distinct assembly behaviors in comparison with conventional amphiphiles, owing to the Janus architecture and combined effects of backbone and hetero double-brushes. Additionally, the introduction of unique functionalities and responsiveness into the self-assembly system of MDBs endows extra opportunities to pursue morphologic diversity and intriguing properties. Herein, we report the synthesis of Janus-like MDBs of polyacrylate--poly(6-(4-butyl-4'-oxyazobenzene) hexyl acrylate)/poly(ethylene oxide) (PA--PAzo/PEO), in which hydrophilic PEO and hydrophobic PAzo brushes were grafted using the combination of concurrent ATRP and click reaction. Due to the special Janus topology and inter/intramolecular association of pendant azobenzene groups, amphiphilic PA--PAzo/PEO self-assembled into multimolecular rod and spindle-like aggregates. It is interesting that a transition of spindle-toroid-spindle was observed upon the alternative irradiation between UV and visible light, which is ascribed to the -to- isomerization of azobenzene molecular brushes. To our best knowledge, this is the first time that azobenzene-containing MDBs enable the fabrication of distinctive self-assembled morphologies and photoinduced toroid formation. The controlled synthesis of MDBs with unique functionalities and subsequent development of their structure-property relationships would shed light on the design and optimization of bottlebrush-based nanomaterials.
不对称大分子双刷(MDBs)由接枝在线性主链上的两种不同侧链组成,由于其两面神结构以及主链和异质双刷的综合作用,与传统两亲物相比具有独特的组装行为。此外,在MDBs的自组装体系中引入独特的功能和响应性,为追求形态多样性和有趣的性质提供了额外的机会。在此,我们报道了聚丙烯酸酯-聚(6-(4-丁基-4'-氧基偶氮苯)己基丙烯酸酯)/聚环氧乙烷(PA-PAzo/PEO)类两面神MDBs的合成,其中亲水性PEO和疏水性PAzo刷通过同时进行的原子转移自由基聚合(ATRP)和点击反应相结合的方法接枝。由于特殊的两面神拓扑结构以及侧链偶氮苯基团的分子间/分子内缔合,两亲性PA-PAzo/PEO自组装成多分子棒状和纺锤状聚集体。有趣的是,在紫外光和可见光交替照射下观察到了纺锤体-环面-纺锤体的转变,这归因于偶氮苯分子刷的顺反异构化。据我们所知,这是含偶氮苯的MDBs首次能够制备出独特的自组装形态并实现光诱导环面形成。具有独特功能的MDBs的可控合成以及随后其结构-性能关系的发展将为基于瓶刷的纳米材料的设计和优化提供启示。