化学
光催化
吲哚试验
儿茶酚
组合化学
光催化
钌
铱
氧化还原
催化作用
有机化学
有机催化
绿色化学
双重角色
反应条件
氧化还原
光化学
纳米技术
对偶(语法数字)
人工光合作用
作者
Xiaozhou Huang,Teng Zeng,R Zhang,Lina Wu,Hao Cui,Yuanming Li,Xiao Zhang
摘要
Visible‐light photoredox catalysis offers a promising approach to convert indoles into functionalized indoles and indolines under mild conditions. However, existing methods often rely on iridium or ruthenium polypyridyl photocatalysts, which suffered from sustainability concerns and limited scope. Here, we report a transition‐metal‐free protocol for diverse indole transformations using catechol‐derived organic photocatalysts that feature balanced redox potentials and broad reactivity. Three mechanistically distinct transformations of indoles including aerobic bromination, dearomative carbamoylation, and dearomative reduction or detosylation have been achieved under net oxidative, redox‐neutral, and net reductive conditions, respectively. A variety of bromoindoles, carbamoyl‐indolines, and functionalized indolines or free N–H indoles are obtained in good yields under mild, transition‐metal‐free conditions. This article provides a sustainable and versatile entry to indole transformations.
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