Jiang Guoxing, Zou Wenwu, Ou Zhaoyuan, Zhang Weifeng, Liang Zhenxing, Du Li
Guangdong Provincial Key Laboratory of Fuel Cell Technology, School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, 510641, P. R. China.
Chemistry. 2023 Apr 6;29(20):e202203610. doi: 10.1002/chem.202203610. Epub 2023 Jan 31.
Imine-linked covalent organic frameworks (imine-COFs) represent the most sought-after class of COFs due to their broad monomer scope and ease of synthesis. Owing to the reversible nature of imine linkages, however, the chemical stability of most imine-COFs is still far from adequate. In this context, emerging strategies, ranging from linkage chemistry to interlayer interaction, have been employed to construct stable imine-COFs for their applications in electronics, sensing, and energy storage devices. This Concept article summarizes the latest advances aimed at tuning the structural stability of imine-COFs. Furthermore, this Concept provides a prospective for the precise design of stable imine-COFs based on the characteristics of structure, physical properties, and chemical functions, as well as the mechanism of structure locking and stabilization during crystal growth.
亚胺连接的共价有机框架材料(亚胺-COFs)因其广泛的单体范围和易于合成的特点,成为最受追捧的一类COFs。然而,由于亚胺键的可逆性,大多数亚胺-COFs的化学稳定性仍远远不够。在此背景下,从连接化学到层间相互作用等新兴策略已被用于构建稳定的亚胺-COFs,以应用于电子、传感和储能设备。这篇概念文章总结了旨在调节亚胺-COFs结构稳定性的最新进展。此外,本概念基于结构、物理性质和化学功能的特点,以及晶体生长过程中的结构锁定和稳定机制,为稳定亚胺-COFs的精确设计提供了展望。