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配体协同作用促进的光诱导铜催化不对称酰胺化反应。

Photoinduced copper-catalysed asymmetric amidation via ligand cooperativity.

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, CA, USA.

出版信息

Nature. 2021 Aug;596(7871):250-256. doi: 10.1038/s41586-021-03730-w. Epub 2021 Jun 28.

Abstract

The substitution of an alkyl electrophile by a nucleophile is a foundational reaction in organic chemistry that enables the efficient and convergent synthesis of organic molecules. Although there has been substantial recent progress in exploiting transition-metal catalysis to expand the scope of nucleophilic substitution reactions to include carbon nucleophiles, there has been limited progress in corresponding reactions with nitrogen nucleophiles. For many substitution reactions, the bond construction itself is not the only challenge, as there is a need to control stereochemistry at the same time. Here we describe a method for the enantioconvergent substitution of unactivated racemic alkyl electrophiles by a ubiquitous nitrogen-containing functional group, an amide. Our method uses a photoinduced catalyst system based on copper, an Earth-abundant metal. This process for asymmetric N-alkylation relies on three distinct ligands-a bisphosphine, a phenoxide and a chiral diamine. The ligands assemble in situ to form two distinct catalysts that act cooperatively: a copper/bisphosphine/phenoxide complex that serves as a photocatalyst, and a chiral copper/diamine complex that catalyses enantioselective C-N bond formation. Our study thus expands enantioselective N-substitution by alkyl electrophiles beyond activated electrophiles (those bearing at least one sp- or sp-hybridized substituent on the carbon undergoing substitution) to include unactivated electrophiles.

摘要

亲核试剂取代烷基亲电试剂是有机化学中的一个基本反应,它能够实现有机分子的高效和收敛性合成。尽管最近在利用过渡金属催化来扩展亲核取代反应的范围以包括碳亲核试剂方面取得了实质性进展,但在相应的含氮亲核试剂反应方面进展有限。对于许多取代反应来说,键的构建本身并不是唯一的挑战,因为同时需要控制立体化学。在这里,我们描述了一种通过普遍存在的含氮官能团酰胺对未活化的外消旋烷基亲电试剂进行对映体转化的方法。我们的方法使用基于铜的光诱导催化剂体系,铜是一种丰富的地球金属。这种不对称 N-烷基化过程依赖于三种不同的配体-双膦、苯氧和手性二胺。配体原位组装形成两种协同作用的独特催化剂:一种是铜/双膦/苯氧配合物,作为光催化剂;另一种是手性铜/二胺配合物,催化对映选择性的 C-N 键形成。因此,我们的研究将烷基亲电试剂的对映选择性 N-取代从活化亲电试剂(在经历取代的碳原子上至少有一个 sp 或 sp 杂化取代基的亲电试剂)扩展到包括未活化的亲电试剂。

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