Donnelly Liam J, Berthet Jean-Claude, Cantat Thibault
Université Paris-Saclay, CEA, CNRS, NIMBE, 91191, Gif-sur-Yvette, France.
Angew Chem Int Ed Engl. 2022 Aug 15;61(33):e202206170. doi: 10.1002/anie.202206170. Epub 2022 Jun 14.
The partial reduction of amides is a challenging transformation that must overcome the intrinsic stability of the amide bond and exhibit high chemoselective control to avoid overreduction to amine products. To address this challenge, we describe a zirconium-catalysed synthesis of imines by the reductive deoxygenation of secondary amides. This reaction exploits the excellent chemoselectivity of Schwartz's reagent (Cp Zr(H)Cl) and utilises (EtO) SiH as a mild stoichiometric reductant to enable catalyst turnover. The reaction generally proceeds with high yields (19 examples, 51 to 95 % yield) and tolerates a variety of functional groups (alkene, ester, nitro, etc.). Stoichiometric mechanistic investigations suggest the regeneration of the active [Zr]-H catalyst is achieved through the metathesis of Si-H and Zr-OR σ-bonds.
酰胺的部分还原是一项具有挑战性的转化过程,必须克服酰胺键的固有稳定性,并展现出高化学选择性控制,以避免过度还原为胺产物。为应对这一挑战,我们描述了一种通过仲酰胺的还原脱氧反应,以锆催化合成亚胺的方法。该反应利用了施瓦茨试剂(CpZr(H)Cl)出色的化学选择性,并使用(EtO)SiH作为温和的化学计量还原剂,以实现催化剂的循环。该反应通常产率较高(19个实例,产率为51%至95%),并且能耐受多种官能团(烯烃、酯、硝基等)。化学计量的机理研究表明,活性[Zr]-H催化剂是通过Si-H和Zr-OR σ键的复分解反应实现再生的。