Accelerating the insertion reactions of (NHC)Cu-Hviaremote ligand functionalization

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Abstract

Most ligand designs for reactions catalyzed by (NHC)Cu-H (NHC = N-heterocyclic carbene ligand) have focused on introducing steric bulk near the Cu center. Here, we evaluate the effect of remote ligand modification in a series of [(NHC)CuH]2in which theparasubstituent (R) on theN-aryl groups of the NHC is Me, Et,tBu, OMe or Cl. Although the R group is distant (6 bonds away) from the reactive Cu center, the complexes have different spectroscopic signatures. Kinetics studies of the insertion of ketone, aldimine, alkyne, and unactivated α-olefin substrates reveal that Cu-H complexes with bulky or electron-rich R groups undergo faster substrate insertion. The predominant cause of this phenomenon is destabilization of the [(NHC)CuH]2dimer relative to the (NHC)Cu-H monomer, resulting in faster formation of Cu-H monomer. These findings indicate that remote functionalization of NHCs is a compelling strategy for accelerating the rate of substrate insertion with Cu-H species.

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Speelman, A. L., Tran, B. L., Erickson, J. D., Vasiliu, M., Dixon, D. A., & Bullock, R. M. (2021). Accelerating the insertion reactions of (NHC)Cu-Hviaremote ligand functionalization. Chemical Science, 12(34), 11495–11505. https://doi.org/10.1039/d1sc01911b

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