Issue 29, 2016

Chiral linker-bridged bis-N-heterocyclic carbenes: design, synthesis, palladium complexes, and catalytic properties

Abstract

A series of chiral bis(benzimidazolium) salts 10–19 with (1R,2R)-cyclohexene, (1R,2R)-diphenylethylene and (aR)-binaphthylene linkers have been designed and synthesized in 30–94% yield. Ten chiral bis(NHC) palladium complexes 20–28 have been synthesized and characterized by NMR, HRMS, elemental analysis and further confirmed by X-ray single crystal analysis. These bis(NHC)-Pd complexes showed obviously different catalytic properties in the asymmetric Suzuki–Miyaura coupling reactions. The (1R,2R)-cyclohexene-bridged bis(NHC)-Pd complex, (R,R)-23, achieved the highest yield of 90%, while complex (aR)-28, with a binaphthylene linker, showed the best enantioselectivity of 60 ee%. The structural analysis of these complexes suggested that such difference of catalytic performance has a close relationship with their coordination surroundings around metal centres.

Graphical abstract: Chiral linker-bridged bis-N-heterocyclic carbenes: design, synthesis, palladium complexes, and catalytic properties

Supplementary files

Article information

Article type
Paper
Submitted
12 Mar 2016
Accepted
12 May 2016
First published
12 May 2016

Dalton Trans., 2016,45, 11699-11709

Chiral linker-bridged bis-N-heterocyclic carbenes: design, synthesis, palladium complexes, and catalytic properties

D. Zhang, Y. He and J. Tang, Dalton Trans., 2016, 45, 11699 DOI: 10.1039/C6DT00984K

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