Guan Song, Chen Aihua
School of Materials Science and Engineering, Beihang University, Beijing 100191, P. R. China.
ACS Macro Lett. 2020 Jan 21;9(1):14-19. doi: 10.1021/acsmacrolett.9b00868. Epub 2019 Dec 11.
Block copolymer (BCP) nanowires are crucially important in diversified fields. However, their applications typically suffer from a tedious fabrication process, heterogeneous morphology, and degradation. Herein, we propose a facile and robust approach to synthesize stilbene-containing BCP nanowires in homogeneous morphology with high stability at high solid content (5%-20% w/w) in one pot. It is realized by the polymerization-induced hierarchical self-assembly and subsequent photodimerization cross-linking under UV irradiation of stilbene mesogens in the core-forming block in the later stage of polymerization. Because of the strong liquid crystalline ordering and photodimerization of stilbene, the cross-linked nanowires can be obtained over a broad BCP composition, which show robust morphological stability when exposed to solvent dissolution tests and water dispersion stability tests. This efficient approach to stabilized nanowires with homogeneous morphology via in situ cross-linking would be useful in various fields, such as nanomedicine and Pickering emulsifiers.
嵌段共聚物(BCP)纳米线在多个领域都至关重要。然而,它们的应用通常存在制备过程繁琐、形态不均一以及降解等问题。在此,我们提出一种简便且稳健的方法,能够在一锅法中以高固含量(5%-20% w/w)合成具有均一形态且稳定性高的含芪BCP纳米线。这是通过聚合诱导的分级自组装以及在聚合后期对成核嵌段中的芪介晶在紫外光照射下进行后续的光二聚交联来实现的。由于芪具有很强的液晶有序性和光二聚作用,交联纳米线能够在较宽的BCP组成范围内获得,并且在溶剂溶解测试和水分散稳定性测试中表现出强大的形态稳定性。这种通过原位交联制备具有均一形态的稳定纳米线的有效方法将在纳米医学和皮克林乳化剂等各个领域发挥作用。