共价键
光催化
堆积
非共价相互作用
材料科学
单线态氧
纳米技术
选择性
共价有机骨架
催化作用
化学
光化学
化学工程
分子
氧气
有机化学
氢键
工程类
作者
Qiujian Xie,Anqi Chen,Zhu Gao,Shuai Gu,Baosheng Wei,Rong‐Ran Liang,Fupeng Zhang,Yanli Zhao,Juntao Tang,Chunyue Pan,Guipeng Yu
出处
期刊:Small
[Wiley]
日期:2024-09-06
被引量:1
标识
DOI:10.1002/smll.202405550
摘要
Abstract The exploration of new properties and functionality of covalent organic frameworks (COFs) rely mostly on the covalent modification of the starting building blocks or linkages. Noncovalent forces that guide the assembly and adhesion of layers to develop two‐dimensional (2D) COFs and improve their bulk properties and functionalities, however, are rarely explored. Herein, the “conformational lock” (CL) effect in 2D hydrazine‐linked COFs with intralayer F–H interaction is discovered and regulated to stabilize interlayer adhesion and develop a facile strategy to increase their stability, promote selectivity and efficiency in reactive singlet oxygen ( 1 O 2 )‐triggered photocatalytic transformation when acting as photocatalysts. The CL strategy endows the fluorinated COFs with an efficient intersystem crossing process for 1 O 2 generation and strong interlayer π–π stacking interaction. The 4F‐COF with the strongest F–H noncovalent interaction exhibits the highest photocatalytic conversion and selectivity (exceeding 98%) in typical 1 O 2 ‐dependent transformations, even over 7 continuous photocatalytic cycles. This work demonstrates that promoting intralayer noncovalent interaction in 2D‐COFs can impart high photocatalytic activity and stability, and would vigorously inspire their developments in heterogeneous catalysis.
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