Center for Nanosystems Chemistry (CNC) and Bavarian Polymer Institute (BPI) , Universität Würzburg , Theodor-Boveri-Weg , 97074 Würzburg , Germany.
Institut für Organische Chemie , Universität Würzburg , Am Hubland , 97074 Würzburg , Germany.
J Am Chem Soc. 2019 Jul 31;141(30):12044-12054. doi: 10.1021/jacs.9b04935. Epub 2019 Jul 19.
Living covalent polymerization has been a subject of intense research for many decades and has culminated in the synthesis of a large variety of block copolymers (BCPs) with structural and functional diversity. In contrast, the research on supramolecular BCPs is still in its infancy and their generation by living processes remains a challenge. Here we report the formation of supramolecular block copolymers by two-component seeded living polymerization of properly designed perylene bisimides (PBIs) under precise kinetic control. Our detailed studies on thermodynamically and kinetically controlled supramolecular polymerization of three investigated PBIs, which contain hydrogen-bonding amide side groups in imide position and chlorine, methoxy, or methylthio substituents in 1,7 bay-positions, revealed that these PBIs form kinetically metastable H-aggregates, which can be transformed into the thermodynamically favored J-aggregates by seed-induced living polymerization. We show here that copolymerization of kinetically trapped states of one PBI with seeds of another PBI leads to the formation of supramolecular block copolymers by chain-growth process from the seed termini as confirmed by UV/vis spectroscopy and atomic force microscopy (AFM). This work demonstrates for the first time the formation of triblock supramolecular polymer architectures with A-B-A and B-A-B block pattern by alternate two-component seeded polymerization in a living manner.
活的共价聚合已经成为几十年来的研究热点,并最终合成了具有结构和功能多样性的各种嵌段共聚物(BCPs)。相比之下,超分子 BCPs 的研究仍处于起步阶段,通过活的过程来产生它们仍然是一个挑战。在这里,我们报道了通过两种组分的超分子种子化活聚合,在精确的动力学控制下形成超分子嵌段共聚物。我们对三种研究的 PBI 的热力学和动力学控制的超分子聚合进行了详细研究,这些 PBI 含有在酰亚胺位置的氢键酰胺侧基,以及在 1,7 位的氯、甲氧基或甲基硫取代基。研究表明,这些 PBI 形成动力学亚稳的 H-聚集体,通过种子诱导的活聚合可以转化为热力学有利的 J-聚集体。我们在这里表明,一种 PBI 的动力学捕获态与另一种 PBI 的种子共聚,通过链增长过程从种子末端形成超分子嵌段共聚物,这一点通过紫外/可见光谱和原子力显微镜(AFM)得到了证实。这项工作首次证明了通过交替的双组分种子化聚合以活的方式形成具有 A-B-A 和 B-A-B 嵌段模式的三嵌段超分子聚合物结构。