化学稳定性
共价键
位阻效应
纳米技术
催化作用
材料科学
化学
实现(概率)
化学改性
理论(学习稳定性)
氧化还原
生化工程
化学过程
组合化学
化学反应
工作(物理)
共价有机骨架
化学工业
作者
Chaoying Fang,Zhaohui Li,Hong Jiang,Shuailei Xie,Tao Wang,Guoqing Zu,Jie Yang,Qichun Zhang,Jia Huang
摘要
Imine-linked covalent organic frameworks (COFs) have wide applications in molecular separation, gas storage, photocatalysis, electrocatalysis, energy storage, and optoelectronic devices because of their unique advantages such as good crystallinity, permanent porosity, and tunable pore structure. However, the practical applications of imine-linked COFs in chemical catalysis and gas separation may be hindered due to their reduced chemical stability in acidic or basic conditions. Recently, various effective strategies have been developed to improve chemical stability of imine-linked COFs. In this review, we summarize the important advances in improving the stability of imine-linked COFs from the viewpoint of design strategies, including electron-donating group substitution, steric tuning, fluorine substitution, redox conversion, six-membered cyclization, five-membered cyclization, and so on. Moreover, the challenges and perspectives are also described to promote the realization of stable imine-linked COFs, which will meet the requirements of these materials in practical applications.
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