电泳剂
化学
对映选择合成
取代基
亲核细胞
配体(生物化学)
取代反应
烷基
组合化学
亲核取代
烷基化
有机合成
亲电芳香族取代
催化作用
立体化学
药物化学
有机化学
受体
生物化学
作者
Caiyou Chen,Jonas C. Peters,Gregory C. Fu
出处
期刊:Nature
[Springer Nature]
日期:2021-06-28
卷期号:596 (7871): 250-256
被引量:164
标识
DOI:10.1038/s41586-021-03730-w
摘要
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 nucleophiles1-4, there has been limited progress in corresponding reactions with nitrogen nucleophiles5-8. 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 sp2-hybridized substituent on the carbon undergoing substitution)8-13 to include unactivated electrophiles.
科研通智能强力驱动
Strongly Powered by AbleSci AI