光激发
化学
激进的
分子间力
光化学
系统间交叉
氢原子萃取
氢原子
直接的
区域选择性
氢键
酰化
催化作用
分子
有机化学
单重态
物理
烷基
核物理学
激发态
作者
Karl A. Scheidt,Osvaldo Gutiérrez,Joshua L. Zhu,Anthony Raymond Tam,Ángel Rentería‐Gómez,Achyut Ranjan Gogoi
标识
DOI:10.26434/chemrxiv-2022-0hm0w
摘要
Photoinduced hydrogen atom transfer (HAT) has been developed as a powerful tool to generate synthetically valuable radical species. The direct photoexcitation of ketones has been known to promote HAT or to generate acyl radicals through Norrish-type pathways, but these modalities remain severely limited by radical side reactions. We report herein a catalyst- and transition metal-free method for the acylation of C–H bonds that leverages the unique properties of stable, isolable acyl azolium species. Specifically, acyl azolium salts are shown to undergo an intermolecular and regioselective HAT upon LED irradiation with a range of substrates bearing active C–H bonds followed by C–C bond formation to afford ketones. Experimental and computational studies support photoexcitation of the acyl azoli-um followed by facile intersystem crossing to access triplet diradical species that promote selective HAT and radical-radical cross-coupling.
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