光催化
共价键
连接器
材料科学
可见光谱
光化学
基质(水族馆)
电子转移
纳米技术
合理设计
催化作用
光电子学
电荷(物理)
蓝光
化学
联动装置(软件)
化学工程
金属有机骨架
载流子
工作(物理)
氧气
表面改性
作者
Keke Zhang,Shengquan Zhu,Kanghui Xiong,Hongxiang Zhao,Yuexin Wang,Xianjun Lang
标识
DOI:10.1002/asia.202500997
摘要
ABSTRACT The wide tunability of covalent organic frameworks (COFs) enables them to be promising for visible light photocatalysis. Herein, the integration of the 2,2′‐(benzo[1,2‐d:4,5‐d′]bis(thiazole)‐2,6‐diyl)diacetonitrile (BBT) linker and the benzo[1,2‐b:3,4‐b′:5,6‐b′′]trithiophene‐2,5,8‐tricarbaldehyde (BTT) knot yields an sp 2 carbon‐conjugated COF, BBT‐BTT‐COF, with an ordered donor–acceptor architecture. Importantly, BBT‐BTT‐COF exhibits a crystalline framework, uniform porosity, high specific surface area, and broad visible light absorption. Optoelectronic characterizations disclose the effective charge separation and transfer of BBT‐BTT‐COF. Capitalizing on these merits, BBT‐BTT‐COF photocatalysis demonstrates high efficiency in the selective oxidation of thioanisoles under blue light irradiation, while also exhibiting excellent recyclability and a broad substrate scope. Mechanistic investigations identify the electron transfer to oxygen as the dominant pathway. This work highlights the critical role of rational design of the linkage of COFs in pushing the boundaries of photocatalysis toward diverse selective organic transformations.
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