Suppr超能文献

受动力学、热力学或途径转换控制的超分子共聚物。

Supramolecular Copolymers Under Kinetic, Thermodynamic, or Pathway-Switching Control.

机构信息

State Key Laboratory of Fine Chemicals, Frontier Science Center for Smart Material, School of Chemical Engineering, Dalian University of Technology, Linggong Road 2, Dalian, 116024, China.

出版信息

Angew Chem Int Ed Engl. 2023 Jul 10;62(28):e202302581. doi: 10.1002/anie.202302581. Epub 2023 May 3.

Abstract

Supramolecular copolymers have attracted much attention due to their potential functionalities. However, the co-assembly strategies to construct co-assemblies of small molecules with well-defined sequence structures are still limited, especially for more complex crystalline block co-assemblies. Herein, we target this challenge by designing Ir complexes 1 and 2, which possess unique self-assembly pathways and are capable of forming crystalline assemblies in aqueous systems. Specifically, block and random co-assemblies of 1 and 2 can be synthesized by kinetic and thermodynamic control, respectively. Meanwhile, by adjusting the water content to orthogonalize the on-pathway and the off-pathway, an unprecedented pathway-switching approach is realized to synthesize block and random co-assemblies. By coupling the kinetic pathways, the present co-assembly strategies are expected to pave the way for the synthesis of crystalline co-assemblies of small molecules and the construction of organic heterostructures.

摘要

超分子聚合物由于其潜在的功能而引起了广泛关注。然而,构建具有明确序列结构的小分子共组装体的共组装策略仍然有限,特别是对于更复杂的结晶嵌段共组装体。在此,我们通过设计具有独特自组装途径且能够在水相系统中形成结晶组装体的 Ir 配合物 1 和 2 来应对这一挑战。具体而言,通过动力学和热力学控制,可以分别合成 1 和 2 的嵌段和无规共组装体。同时,通过调节水含量使途径正交化,实现了前所未有的途径转换方法来合成嵌段和无规共组装体。通过耦合动力学途径,本共组装策略有望为小分子结晶共组装体的合成和有机杂化结构的构建铺平道路。

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