化学
共价键
纳米技术
灵活性(工程)
单体
制作
共价有机骨架
组合化学
金属有机骨架
有机合成
吸附
树枝状大分子
素描
支柱
联动装置(软件)
电子受体
模板
接受者
动态共价化学
工作(物理)
作者
Jinquan Suo,Fengqian Chen,Bin Zhao,Hui Li,Valentin Valtchev,Shilun Qiu,Qianrong Fang
摘要
Redox-active covalent organic frameworks (COFs) are promising materials for electronics, sensing, and catalysis. However, their synthesis is hampered by the scarcity of redox-active monomers and the difficulty of functionalizing as-synthesized frameworks without compromising crystallinity. Here, we introduce a reductive N-methylation strategy that enables the universal and mild conversion of imine-linked COFs into crystalline tertiary amine-linked frameworks (NMe-COFs). The method preserves structural order while imparting strong electron-donating and redox-responsive properties. Among the NMe-COFs, COF-300-NMe exhibits an 11-fold increase in iodine uptake with a distinct gate-opening adsorption profile─a behavior that computational studies attribute to enhanced framework flexibility and raised electronic energy levels. Furthermore, incorporation of the electron acceptor 7,7,8,8-tetracyanoquinodimethane into COF-300-NMe yields a charge-transfer complex exhibiting distinct spin signatures. This work establishes a versatile postsynthetic linkage conversion strategy, paving the way toward stimuli-responsive soft COFs and purely organic spin-active materials.
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