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Iron porphyrin catalysed light driven C–H bond amination and alkene aziridination with organic azides

机译:铁卟啉催化光从驱动C-H键胺化和烯烃叠氮化物质叠氮化物

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Visible light driven nitrene transfer and insertion reactions of organic azides are an attractive strategy for the design of C–N bond formation reactions under mild reaction conditions, the challenge being lack of selectivity as a free nitrene reactive intermediate is usually involved. Herein is described an iron( III ) porphyrin catalysed sp ~(3) C–H amination and alkene aziridination with selectivity by using organic azides as the nitrogen source under blue LED light (469 nm) irradiation. The photochemical reactions display chemo- and regio-selectivity and are effective for the late-stage functionalization of natural and bioactive compounds with complexity. Mechanistic studies revealed that iron porphyrin plays a dual role as a photosensitizer and as a catalyst giving rise to a reactive iron–nitrene intermediate for subsequent C–N bond formation.
机译:可见光驱动有机氮化的硝酸硝基转移和插入反应是在温和反应条件下设计C-N键形成反应的有吸引力的策略,通常涉及作为游离硝酸丁烯反应性中间体的选择性缺乏选择性。本文描述了一种铁(III)卟啉催化的SP〜(3)C-H胺化,通过使用有机叠氮作为氮源(469nm)照射,通过使用有机叠氮化物具有选择性的烯烃叠氮化。光化学反应显示化学和认证选择性,并对具有复杂性的天然和生物活性化合物的后期官能化有效。机械研究表明,铁卟啉作为光敏剂的双重作用和作为随后的C-N键形成的反应性铁 - 硝基中间体产生双重作用。

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