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锰卟啉催化的氟离子促进的脂肪族 C-H 氧化氟化。

Oxidative aliphatic C-H fluorination with fluoride ion catalyzed by a manganese porphyrin.

机构信息

Department of Chemistry, Frick Chemistry Laboratory, Princeton University, Princeton, NJ 08544, USA.

出版信息

Science. 2012 Sep 14;337(6100):1322-5. doi: 10.1126/science.1222327.

Abstract

Despite the growing importance of fluorinated organic compounds in drug development, there are no direct protocols for the fluorination of aliphatic C-H bonds using conveniently handled fluoride salts. We have discovered that a manganese porphyrin complex catalyzes alkyl fluorination by fluoride ion under mild conditions in conjunction with stoichiometric oxidation by iodosylbenzene. Simple alkanes, terpenoids, and even steroids were selectively fluorinated at otherwise inaccessible sites in 50 to 60% yield. Decalin was fluorinated predominantly at the C2 and C3 methylene positions. Bornyl acetate was converted to exo-5-fluoro-bornyl acetate, and 5α-androstan-17-one was fluorinated selectively in the A ring. Mechanistic analysis suggests that the regioselectivity for C-H bond cleavage is directed by an oxomanganese(V) catalytic intermediate followed by F delivery via an unusual manganese(IV) fluoride that has been isolated and structurally characterized.

摘要

尽管含氟有机化合物在药物开发中的重要性日益增加,但目前还没有直接的方法可以使用方便处理的氟盐来氟化脂肪族 C-H 键。我们发现锰卟啉配合物在碘苯协同氧化的温和条件下,通过氟离子催化烷基氟化反应。简单的烷烃、萜烯类化合物,甚至甾体类化合物在 50%至 60%的收率下都可以选择性地在其他难以接近的位置氟化。十氢萘主要在 C2 和 C3 亚甲基位置氟化。莰乙酸酯转化为外-5-氟莰乙酸酯,而 5α-雄甾-17-酮则选择性地在 A 环氟化。机理分析表明,C-H 键断裂的区域选择性是由一个氧化锰(V)催化中间体指导的,然后通过一种已分离并结构表征的罕见的锰(IV)氟化物来实现 F 的传递。

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