钌
催化作用
化学
光化学
氢原子
烷烃
电子转移
表面改性
立体化学
有机化学
物理化学
烷基
作者
Yulei Wang,Shan Chen,Xinran Chen,Agnese Zangarelli,Lutz Ackermann
出处
期刊:Angewandte Chemie
[Wiley]
日期:2022-05-09
卷期号:61 (32): e202205562-e202205562
被引量:46
标识
DOI:10.1002/anie.202205562
摘要
Abstract Distal C(sp 2 )−H and C(sp 3 )−H functionalizations have recently emerged as step‐economical tools for molecular synthesis. However, while the C(sp 2 )−C(sp 3 ) construction is of fundamental importance, its formation through double remote C(sp 2 )−H/C(sp 3 )−H activation has proven elusive. By merging the ruthenium‐catalyzed meta ‐C(sp 2 )−H functionalization with an aliphatic hydrogen atom transfer (HAT) process, we, herein, describe the catalyzed twofold remote C(sp 2 )−H/C(sp 3 )−H functionalizations via photo‐induced ruthenium‐mediated radical relay. Thus, meta ‐C(sp 2 )−H arene bonds and remote C(sp 3 )−H alkane bonds were activated by a single catalyst in a single operation. This process was accomplished at room temperature by visible light—notably without exogenous photocatalysts. Experimental and computational theory studies uncovered a manifold comprising ortho ‐C−H activation, single‐electron‐transfer (SET), 1, n ‐HAT ( n =5–7) and σ‐activation by means of a single ruthenium(II) catalyst.
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