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通过酰胺到酰基碘的重新定向实现亲电N-C(O)活化,对未活化的叔酰胺进行高化学选择性转酰胺化反应。

Highly Chemoselective Transamidation of Unactivated Tertiary Amides by Electrophilic N-C(O) Activation by Amide-to-Acyl Iodide Re-routing.

作者信息

Zuo Dongxu, Wang Qun, Liu Long, Huang Tianzeng, Szostak Michal, Chen Tieqiao

机构信息

College of Chemical Engineering and Technology, Hainan University, Haikou, 570228, China.

College of Chemistry and Chemical Engineering, Hunan University, Changsha, 410082, China.

出版信息

Angew Chem Int Ed Engl. 2022 Jun 13;61(24):e202202794. doi: 10.1002/anie.202202794. Epub 2022 Apr 11.

Abstract

The challenging transamidation of unactivated tertiary amides has been accomplished via cooperative acid/iodide catalysis. Most crucially, the method provides a novel manifold to re-route the reactivity of unactivated N,N-dialkyl amides through reactive acyl iodide intermediates, thus reverting the classical order of reactivity of carboxylic acid derivatives. This method provides a direct route to amide-to-amide bond interconversion with excellent chemoselectivity using equivalent amounts of amines. The combination of acid and iodide has been identified as the essential factor to activate the amide C-N bond through electrophilic catalytic activation, enabling the production of new desired transamidated products with wide substrate scope of both unactivated amides and amines, including late-stage functionalization of complex APIs (>80 examples). We anticipate that this powerful activation mode of unactivated amide bonds will find broad-ranging applications in chemical synthesis.

摘要

未活化叔酰胺具有挑战性的转酰胺化反应已通过酸/碘化物协同催化得以实现。最为关键的是,该方法提供了一种全新的方式,通过活性酰碘中间体改变未活化N,N-二烷基酰胺的反应活性,从而颠覆了羧酸衍生物的经典反应活性顺序。此方法提供了一条直接实现酰胺到酰胺键相互转化的途径,使用等量的胺时具有出色的化学选择性。已确定酸和碘化物的组合是通过亲电催化活化来激活酰胺C-N键的关键因素,能够以广泛的未活化酰胺和胺为底物范围生产新的所需转酰胺化产物,包括复杂活性药物成分的后期官能团化(>80个示例)。我们预计这种未活化酰胺键的强大活化模式将在化学合成中得到广泛应用。

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