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钌/光氧化还原双催化实现远程C(sp)-H/-C(sp)-H键的位点选择性偶联及机理研究

Site-selective coupling of remote C(sp)-H/-C(sp)-H bonds enabled by Ru/photoredox dual catalysis and mechanistic studies.

作者信息

Liu Hong-Chao, Kong Xiangtao, Gong Xiao-Ping, Li Yuke, Niu Zhi-Jie, Gou Xue-Ya, Li Xue-Song, Wang Yu-Zhao, Shi Wei-Yu, Huang Yan-Chong, Liu Xue-Yuan, Liang Yong-Min

机构信息

State Key Laboratory of Applied Organic Chemistry, Lanzhou University Lanzhou 730000 China

Henan Key Laboratory of New Optoelectronic Functional Materials, College of Chemistry and Chemical Engineering, Anyang Normal University Anyang 455000 China.

出版信息

Chem Sci. 2022 Apr 12;13(18):5382-5389. doi: 10.1039/d2sc00764a. eCollection 2022 May 11.

Abstract

Construction of C(sp)-C(sp) bonds regioselective coupling of C(sp)-H/C(sp)-H bonds is challenging due to the low reactivity and regioselectivity of C-H bonds. Here, a novel photoinduced Ru/photocatalyst-cocatalyzed regioselective cross-dehydrogenative coupling of dual remote C-H bonds, including inert γ-C(sp)-H bonds in amides and -C(sp)-H bonds in arenes, to construct -alkylated arenes has been accomplished. This metallaphotoredox-enabled site-selective coupling between remote inert C(sp)-H bonds and -C(sp)-H bonds is characterized by its unique site-selectivity, redox-neutral conditions, broad substrate scope and wide use of late-stage functionalization of bioactive molecules. Moreover, this reaction represents a novel case of regioselective cross-dehydrogenative coupling of unactivated alkanes and arenes a new catalytic process and provides a new strategy for -functionalized arenes under mild reaction conditions. Density functional theory (DFT) calculations and control experiments explained the site-selectivity and the detailed mechanism of this reaction.

摘要

构建C(sp)-C(sp)键 C(sp)-H/C(sp)-H键的区域选择性偶联具有挑战性,因为C-H键的反应活性和区域选择性较低。在此,已实现了一种新型光诱导Ru/光催化剂共催化的双远程C-H键区域选择性交叉脱氢偶联反应,包括酰胺中的惰性γ-C(sp)-H键和芳烃中的-C(sp)-H键,以构建烷基化芳烃。这种金属光氧化还原介导的远程惰性C(sp)-H键与-C(sp)-H键之间的位点选择性偶联具有独特的位点选择性、氧化还原中性条件、广泛的底物范围以及生物活性分子后期功能化的广泛应用等特点。此外,该反应代表了未活化烷烃和芳烃区域选择性交叉脱氢偶联的一个新实例——一种新的催化过程,并为在温和反应条件下实现芳烃的官能化提供了新策略。密度泛函理论(DFT)计算和对照实验解释了该反应的位点选择性和详细机理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6903/9093131/0f4a75451038/d2sc00764a-s1.jpg

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