Issue 3, 2017

Rational design of model Pd(ii)-catalysts for C–H activation involving ligands with charge-shift bonding characteristics

Abstract

In this work, five new palladium(II) complexes have been designed as the model catalysts for methane to methyl trifluoroacetate conversion. All these compounds are analogues of the well-established (bis-NHC)PdBr2 complex (NHC, N-heterocyclic carbenes), derived by complexing the palladium(II) metal ion with the derivatives of bis-2-borabicyclo[1.1.0]but-1(3)-ene (bis-2BB) ligands using the sp2 carbons. Our density functional theory calculation results suggest that the (bis-2BB)PdBr2 catalysts outperform the popular (bis-NHC)PdBr2 complex in the desired catalytic process, and further reveal that the charge-shift bonding in the bis-2BB ligands contributes to the improved catalytic performance. These findings may spark new ideas for experimental design of more efficient organometallic catalysts for C–H bond activation and functionalization.

Graphical abstract: Rational design of model Pd(ii)-catalysts for C–H activation involving ligands with charge-shift bonding characteristics

Supplementary files

Article information

Article type
Paper
Submitted
08 Sep 2016
Accepted
03 Dec 2016
First published
08 Dec 2016

Phys. Chem. Chem. Phys., 2017,19, 2417-2424

Rational design of model Pd(II)-catalysts for C–H activation involving ligands with charge-shift bonding characteristics

D. Ma, C. Zhang, Z. Chen and X. Xu, Phys. Chem. Chem. Phys., 2017, 19, 2417 DOI: 10.1039/C6CP06215F

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