College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing, 211106, P. R. China.
Adv Sci (Weinh). 2023 Mar;10(9):e2206897. doi: 10.1002/advs.202206897. Epub 2023 Jan 22.
A dimeric fluorescent macrocycle m-TPE Di-EtP5 (meso-tetraphenylethylene dimeric ethoxypillar[5]arene) is synthesized based on the meso-functionalized ethoxy pillar[5]arene. Through the connectivity of two pillar[5]arenes by CC double bond, the central tetraphenylethylene (TPE) moiety is simultaneously formed. The resultant bicyclic molecule not only retains the host-guest properties of pillararenes but also introduces the interesting aggregation-induced emission properties inherent in the embedded TPE structure. Three dinitrile derivatives with various linkers are designed as guests (G1, G2, and G3) to form host-guest assemblies with m-TPE Di-EtP5. The morphological control and fluorescence properties of the assemblies are successfully realized. G1 with a shorter alkyl chain as the linker completely threads into the cavities of the host. G2, due to its longer chain length, forms a linear supramolecular polymer upon binding to m-TPE Di-EtP5. G3 differs from G2 by possessing a bulky phenyl group in the middle of the chain, which can be further assembled with m-TPE Di-EtP5 to form supramolecular layered polymer and precipitated out in solution, and can be efficiently applied to photocatalytic reactions.
基于中位官能化的乙氧基柱[5]芳烃,合成了一种二聚荧光大环化合物 m-TPE Di-EtP5(间位四苯乙烯二聚乙氧基柱[5]芳烃)。通过 CC 双键连接两个柱[5]芳烃,同时形成中央四苯乙烯(TPE)部分。所得双环分子不仅保留了柱芳烃的主体-客体性质,而且引入了嵌入 TPE 结构中固有的有趣的聚集诱导发射性质。设计了三个具有不同连接基的二腈衍生物作为客体(G1、G2 和 G3),与 m-TPE Di-EtP5 形成主客体组装体。成功实现了组装体的形态控制和荧光性质。作为连接基的较短烷基链的 G1 完全穿入主体的空腔中。由于其较长的链长,G2 在与 m-TPE Di-EtP5 结合时形成线性超分子聚合物。G3 与 G2 的不同之处在于其链中间有一个大的苯基,它可以进一步与 m-TPE Di-EtP5 组装形成超分子层状聚合物并在溶液中沉淀出来,并可有效地应用于光催化反应。