化学
共价键
催化作用
反应性(心理学)
组合化学
激进的
分子
光化学
密度泛函理论
烷基化
小分子
模块化设计
有机化学
能量转移
纳米技术
作者
Tatsuhiro Kawaguchi,Yurina Shioda,Yutaro Hanai,Tsubasa Nakashima,Takashi Ooi
摘要
-sulfonyl vinylaziridines to the corresponding aminocyclopentanes with adjacent vinyl appendages under visible-light irradiation. Based on the initial findings on the ability of thiazole-2-thione radical cations to act as robust catalysts, pertinent structural modifications of the thiazole-2-thione enabled its excited-state triplet biradical, formed via energy transfer from an iridium-based photocatalyst, to exert high catalytic activity. This system offers a reliable tool for straightforward access to various aminocyclopentanes, which are important components of a range of bioactive molecules and pharmaceuticals. A series of experimental and computational mechanistic investigations underpinned a predominant pathway that involves the triplet biradical as a catalytically active species viable to engage in the covalent activation of vinylaziridine for the ensuing radical cascades. This study sheds light on the potential of excited-state triplet biradicals as radical covalent catalysts, providing a strategy for expanding this promising field of research.
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