Alkali Metal Dihydropyridines in Transfer Hydrogenation Catalysis of Imines: Amide Basicity versus Hydride Surrogacy

Author:

Macdonald Peter A.1,Banerjee Sumanta1ORCID,Kennedy Alan R.1ORCID,van Teijlingen Alexander1,Robertson Stuart D.1ORCID,Tuttle Tell1ORCID,Mulvey Robert E.1ORCID

Affiliation:

1. WestCHEM, Department of Pure and Applied Chemistry University of Strathclyde Glasgow G1 1XL UK

Abstract

AbstractCatalytic reduction of a representative set of imines, both aldimines and ketimines, to amines has been studied using transfer hydrogenation from 1,4‐dicyclohexadiene. Unusually, this has been achieved using s‐block pre‐catalysts, namely 1‐metallo‐2‐tert‐butyl‐1,2‐dihydropyridines, 2‐tBuC5H5NM, M(tBuDHP), where M=Li–Cs. Reactions have been monitored in C6D6 and tetrahydrofuran‐d8 (THF‐d8). A definite trend is observed in catalyst efficiency with the heavier alkali metal tBuDHPs outperforming the lighter congeners. In general, Cs(tBuDHP) is the optimal pre‐catalyst with, in the best cases, reactions producing quantitative yields of amines in minutes at room temperature using 5 mol % catalyst. Supporting the experimental study, Density Functional Theory (DFT) calculations have also been carried out which reveal that Cs has a pathway with a significantly lower rate determining step than the Li congener. In the postulated initiation pathways DHP can act as either a base or as a surrogate hydride.

Funder

Engineering and Physical Sciences Research Council

Publisher

Wiley

Subject

General Medicine

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