吲哚试验
发色团
化学
光催化
合理设计
共价键
三嗪
咪唑吡啶
组合化学
光致变色
催化作用
光电效应
绿灯
可见光谱
光催化
共价有机骨架
光化学
材料科学
反应条件
带隙
有机化学
纳米技术
绿色化学
作者
Liting Yang,Xiaoxu Xu,Huiru Pan,Yikai Zhang,Xinyu Cao,Shuyu Lai,Lipeng Zhai,Yanjie Wang,Guoqun Liu,Xiangtao Kong,Huijie Qiao,Mingli Jiao
标识
DOI:10.1021/acsapm.5c02719
摘要
Owing to their structural stability, diversity, and easy synthesis, characterization, and modification, covalent triazine frameworks (CTFs) are promising heterogeneous photocatalysts for different types of organic transformations. Herein, we prepared CTFs modified with different chromophore groups (nitro group: CTF-1, thiadiazole group: CTF-2) by changing the building unit structure and compared their properties with an unmodified CTF (CTF-3). The introduction of chromophores resulted in bandgap narrowing and facilitated charge separation/transport and light collection, which showed that the photoelectric properties of CTFs can be regulated by tuning their framework microenvironment. The photocatalytic activity of these CTFs for the C3–H thiocyanation of indole followed the order of CTF-3 < CTF-1 (×1.24 that of CTF-3) < CTF-2 (×1.44 that of CTF-3) and was consistent with our expectations. In addition, CTF-2 has demonstrated excellent catalytic activity in the photocatalytic C3–H thiocyanation of imidazopyridines. Thus, this study presents a green synthetic approach for functionalized indole and imidazopyridine derivatives, while establishing a rational design paradigm for CTFs as photocatalysts in diverse organic transformations.
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