Yang Zhaozheng, Esteve Ferran, Antheaume Cyril, Lehn Jean-Marie
Lehn Institute of Functional Materials (LIFM), Sun Yat-Sen University 510006 Guangzhou China.
Laboratoire de Chimie Supramoléculaire, Institut de Science et d'Ingénierie Supramoléculaires (ISIS), Université de Strasbourg 8 allée Gaspard Monge 67000 Strasbourg France
Chem Sci. 2023 Jun 2;14(24):6631-6642. doi: 10.1039/d3sc01174g. eCollection 2023 Jun 21.
Investigating the self-assembly and self-sorting behaviour of dynamic covalent organic architectures makes possible the parallel generation of multiple discrete products in a single one pot procedure. We here report the self-assembly of covalent organic macrocycles and macrobicyclic cages from dialdehyde and polyamine components multiple [2 + 2] and [3 + 2] polyimine condensations. Furthermore, component self-sorting processes have been monitored within the dynamic covalent libraries formed by these macrocycles and macrobicyclic cages. The progressive assembly of the final structures involves intermediates which undergo component selection and self-correction to generate the final thermodynamic constituents. The homo-self-sorting observed seems to involve entropic factors, as the homoleptic species present a higher symmetry than the competing heteroleptic ones. This study not only emphasizes the importance of an adequate design of the components of complex self-sorting systems, but also verifies the conjecture that systems of higher complexity may generate simpler outputs through the operation of competitive self-sorting.
研究动态共价有机结构的自组装和自分类行为,使得在单个一锅法过程中并行生成多个离散产物成为可能。我们在此报告了由二醛和多胺组分通过多个[2 + 2]和[3 + 2]聚亚胺缩合反应形成共价有机大环和大环双环笼的自组装过程。此外,已经在由这些大环和大环双环笼形成的动态共价库中监测了组分自分类过程。最终结构的逐步组装涉及中间体,这些中间体经过组分选择和自我校正以生成最终的热力学组分。观察到的同型自分类似乎涉及熵因素,因为同配物种比竞争的杂配物种具有更高的对称性。这项研究不仅强调了复杂自分类系统组件合理设计的重要性,还验证了这样的推测,即更高复杂性的系统可能通过竞争性自分类操作产生更简单的输出。