Wang Yonghui, Shao Feng, Sauvé Ethan R, Tonge Christopher M, Hudson Zachary M
Department of Chemistry, The University of British Columbia, 2036 Main Mall, Vancouver, British Columbia V6T 1Z1, Canada.
Soft Matter. 2019 Jul 10;15(27):5421-5430. doi: 10.1039/c9sm00931k.
Bottlebrush copolymers have shown promise as building blocks for self-assembled nanomaterials due to their reduced chain entanglement relative to linear polymers and their ability to self-assemble with remarkably low critical micelle concentrations (CMCs). Concurrently, the preparation of bottlebrush polymers from organic electronic materials has recently been described, allowing multiple optoelectronic functions to be incorporated along the length of single bottlebrush strands. Here we describe the self-assembly of bottlebrush surfactants containing soluble n-butyl acrylate blocks and carbazole-based organic semiconductors, which self-assemble in selective solvent to give spherical micelles with CMCs below 54 nM. These narrowly dispersed structures were stable in solution at high dilution over periods of months, and could further be functionalized with fluorescent dyes to give micelles with quantum yields of 100%. These results demonstrate that bottlebrush-based nanostructures can be formed from organic semiconductor building blocks, opening the door to the preparation of fluorescent or redox-active micelles from giant polymeric surfactants.
由于相对于线性聚合物而言,其链缠结减少,并且能够以极低的临界胶束浓度(CMC)进行自组装,刷状共聚物已显示出作为自组装纳米材料构建单元的潜力。同时,最近已经描述了由有机电子材料制备刷状聚合物,这使得多种光电功能能够沿着单根刷状链的长度整合。在此,我们描述了含有可溶性丙烯酸正丁酯嵌段和咔唑基有机半导体的刷状表面活性剂的自组装,它们在选择性溶剂中自组装形成CMC低于54 nM的球形胶束。这些窄分布的结构在高稀释度的溶液中数月内保持稳定,并且可以进一步用荧光染料进行功能化,以得到量子产率为100%的胶束。这些结果表明,可以由有机半导体构建单元形成基于刷状的纳米结构,为从巨型聚合物表面活性剂制备荧光或氧化还原活性胶束打开了大门。