Login / Signup

Carbonyl catalysis enables a biomimetic asymmetric Mannich reaction.

Jianfeng ChenXing GongJianyu LiYingkun LiJiguo MaChengkang HouGuoqing ZhaoWei-Cheng YuanBaoguo Zhao
Published in: Science (New York, N.Y.) (2018)
Chiral amines are widely used as catalysts in asymmetric synthesis to activate carbonyl groups for α-functionalization. Carbonyl catalysis reverses that strategy by using a carbonyl group to activate a primary amine. Inspired by biological carbonyl catalysis, which is exemplified by reactions of pyridoxal-dependent enzymes, we developed an N-quaternized pyridoxal catalyst for the asymmetric Mannich reaction of glycinate with aryl N-diphenylphosphinyl imines. The catalyst exhibits high activity and stereoselectivity, likely enabled by enzyme-like cooperative bifunctional activation of the substrates. Our work demonstrates the catalytic utility of the pyridoxal moiety in asymmetric catalysis.
Keyphrases
  • visible light
  • highly efficient
  • ionic liquid
  • metal organic framework
  • solid state
  • room temperature
  • reduced graphene oxide
  • carbon dioxide
  • gold nanoparticles
  • electron transfer