Catalytic Decarbonylation of Unstrained Diaryl Ketone Moieties to 2,2′-Bipyridyls Enabled by Electron-Deficient Pd Ensembles

28 May 2024, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

Although decarbonylation of carbonyl compounds have attracted much attention for the direct molecular transformations of universal carbonyl moieties into useful compounds, reports on the catalytic decarbonylation of diaryl ketones are scarce. In this study, we successfully developed a catalytic decarbonylation of unstrained diaryl ketone moieties in compounds bearing bidentate directing groups to obtain 2,2′-bipyridyls using a CeO2-supported Cu–Pd alloy nanoparticle catalyst. The catalyst characterization and a series of control experiments revealed that the decarbonylation was efficiently catalyzed by Pd(0) ensembles, which became electron-deficient upon alloying with a small amount of Cu(0) species.

Keywords

decarbonylation
diaryl ketones
Pd–Cu alloy
heterogeneous catalysts
bidentate directing groups

Supplementary materials

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Supporting Information
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Experimental methods, spectral data, supporting figures, supporting tables, supporting schemes, supporting references, and NMR spectra are described.
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