CAS Key Laboratory of Nanosystem and Hierarchical Fabrication, CAS Center for Excellence in Nanoscience , National Center for Nanoscience and Technology , Beijing 100190 , China.
School of Materials Science and Engineering , Central South University of Forestry and Technology , Changsha 410004 , China.
ACS Appl Mater Interfaces. 2018 Dec 5;10(48):41350-41358. doi: 10.1021/acsami.8b14671. Epub 2018 Nov 16.
Controllable hierarchical reduction of carbon dioxide (CO) to selectively afford versatile chemicals with specific carbon oxidation state is important but still remains a huge challenge to be realized. Here, we report new zwitterionic covalent organic frameworks ([BE] -TD-COFs), prepared by introducing betaine groups (BE) onto the channel walls of presynthesized frameworks via pore surface engineering methodology, as the heterogeneous organocatalysts for CO reduction. The adjustable density of immobilized BE groups as well as good preservation of crystallinity and porosity inherited from their parent COFs endow [BE] -TD-COFs with highly ordered catalytic site distribution and one-dimensional mass transport pathway in favor of catalysis. By controlling the reaction temperature and amount of CO, [BE] -TD-COFs present high activity in catalyzing reduction of CO with amine and phenylsilane (PhSiH) to produce formamides, aminals, and methylamines, respectively, with high yield and selectivity. Furthermore, high stability and insolubility bring excellent reusability to [BE]-TD-COFs with well-maintained catalytic performance after four cycles of use. Notably, this is a novel example that COFs are developed as heterogeneous catalysts for hierarchical two-, four-, and six-electron reduction of CO with amines and PhSiH to form C-N bonds as well as afford C, C, and C species efficiently and selectively.
可控的二氧化碳(CO)逐级还原,以选择性地获得具有特定碳氧化态的多功能化学品,这一点很重要,但要实现这一目标仍然是一个巨大的挑战。在这里,我们报告了一种新的两性离子共价有机框架([BE]-TD-COFs),通过孔表面工程方法将甜菜碱基团(BE)引入预先合成的框架的通道壁上,作为 CO 还原的非均相有机催化剂。固定化 BE 基团的可调密度以及从其母体 COFs 中继承的结晶度和孔隙率的良好保持,使[BE]-TD-COFs 具有高度有序的催化位分布和一维质量传输途径,有利于催化。通过控制反应温度和 CO 的用量,[BE]-TD-COFs 在催化胺和苯基硅烷(PhSiH)还原 CO 生成甲酰胺、亚胺和甲基胺方面表现出很高的活性,产率和选择性都很高。此外,高稳定性和不溶性使[BE]-TD-COFs 在经过四次使用后仍能保持良好的催化性能,具有优异的可重复使用性。值得注意的是,这是一个新的例子,证明 COFs 可以作为非均相催化剂,用于胺和 PhSiH 的 CO 的两电子、四电子和六电子逐级还原,以有效地和选择性地形成 C-N 键,并提供 C、C 和 C 物种。