光催化
共价键
材料科学
二胺
芘
亚砜
组合化学
缩合反应
光化学
氨
有机化学
冷凝
纳米技术
化学工程
催化作用
化学稳定性
高分子化学
化学
聚合物
二甲基亚砜
作者
Xiaohu Li,Yanjing Wang,Liang Cheng,Linlin Liu
标识
DOI:10.1002/adma.202523654
摘要
As an emerging class of crystalline porous materials, COFs have attracted increasing attention in fields such as photocatalysis. Understanding how the linkage chemistry of COFs influences their construction and photoelectrochemical properties and photocatalytic performance remains a significant challenge. Herein, two quinazoline-linked COFs are assembled by the condensation of 1,3,6,8-tetra (4-formylphenyl) pyrene (TFPPy) with 3,3'-dibenzoyl-[1,1'-biphenyl]-4,4'-diamine (BD(Bz)) and 3,3'-dibenzoyl-4,4'-terphenyl diamine (BT(Bz)) respectively through a three-component reaction in the presence of an ammonia source. By integrating quinazoline linkage with pyrene structural unit, BD(Bz)-TFPPy-COF (COF-1b) and BT(Bz)-TFPPy-COF (COF-2b) exhibit electron donor-acceptor properties and possess high chemical stability as well, which demonstrated excellent photocatalytic performance for the selective synthesis of sulfoxides from alkenes and thiols. Incorporation of linkage chemistry and building blocks selection of COFs provides effective strategies for modulating its optoelectronic properties to improve photocatalytic performance.
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