化学
分子内力
芳基
分子间力
背景(考古学)
组合化学
吲哚试验
反应性(心理学)
胺气处理
立体化学
分子
有机化学
医学
生物
病理
古生物学
替代医学
烷基
作者
Hui-Min Zhu,Lei Tong,Zhi‐Xin Liao,Jia‐Chen Xiang,An‐Xin Wu
标识
DOI:10.1038/s42004-025-01528-9
摘要
Abstract Rearrangement reactions are generally considered to be a rapid and synergistic intramolecular reconstructing process that is insensitive to intermolecular intruders. We report that α-iminol rearrangements could be strategically redirected by the interception of Petasis reactions, in the context of being avoided by strong electron-withdrawing groups on the migrative aryl units. 1,4-Aryl migration prevails over 1,2-aryl migration via forming a boron-ate complex. By leveraging this reactivity, we developed a regiospecific synthesis of unsymmetrically 2,3-diaryl substituted indoles from three readily available feedstocks: an amine, an arylglyoxal, and a boronic acid. While traditional Petasis reactions with similar three-component inputs are typically applied to build C(sp 3 )-C(sp 2 ) and C(sp 3 )-C(sp 3 ) bonds, the present transformation offers a special opportunity for constructing a C(sp 2 )-C(sp 2 ) linkage. Highly substituted indole motifs with structural diversity in the C2 position are easily accessed by this three-component reaction. A mechanism containing a copper-cobalt collaborative promotion process was suggested.
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