共价键
吡嗪
羧化
胍
连接器
材料科学
脱质子化
催化作用
金属有机骨架
组合化学
有机催化
有机碱
有机化学
化学
计算机科学
离子
对映选择合成
操作系统
吸附
作者
Peng-Fei Mu,Lin Zhang,Ran Bu,Li-Fei Xiong,Yawei Liu,En‐Qing Gao
标识
DOI:10.1021/acsami.2c20510
摘要
C(sp)-H carboxylation with CO2 is an attractive route of CO2 utilization and is traditionally promoted by transition metal catalysts, and organocatalysis for the conversion remains rarely explored and challenging. In this article, triaminoguanidine-derived covalent organic frameworks (COFs) were used as platforms to develop heterogeneous organocatalysts for the reaction. We demonstrated that the COFs with guanidine cores and pyrazine linkers show high catalytic performance as a result of the cooperation between cores and linkers. The core is vitally important, which is deprotonated to the guanidinato group that binds and activates CO2. The pyrazine linker collaborates with the core to activate the C(sp)-H bond through hydrogen bonding. In addition, the COFs show acid- and base-responsive chromic behaviors thanks to the amphoteric nature of the core and the auxochromic effect of the pyrazine linker. The work opens up new avenues to organocatalysts for C-H carboxylation and chromic materials for sensing and switching applications.
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