generation of stoichiometric HCN and its application in the Pd-catalysed cyanation of aryl bromides: evidence for a transmetallation step between two oxidative addition Pd-complexes.

Chem Sci

Carbon Dioxide Activation Center (CADIAC) , The Interdisciplinary Center (iNANO) , Department of Chemistry , Aarhus University, Gustav Wieds Vej 14 , 8000 Aarhus , Denmark . Email:

Published: December 2017

A protocol for the Pd-catalysed cyanation of aryl bromides using near stoichiometric and gaseous hydrogen cyanide is reported for the first time. A two-chamber reactor was adopted for the safe liberation of generated HCN in a closed environment, which proved highly efficient in the Ni-catalysed hydrocyanation as the test reaction. Subsequently, this setup was exploited for converting a range of aryl and heteroaryl bromides (28 examples) directly into the corresponding benzonitriles in high yields, without the need for cyanide salts. Cyanation was achieved employing the Pd(0) precatalyst, P(Bu)-Pd-G3 and a weak base, potassium acetate, in a dioxane-water solvent mixture. The methodology was also suitable for the synthesis of C-labelled benzonitriles with generated C-hydrogen cyanide. Stoichiometric studies with the metal complexes were undertaken to delineate the mechanism for this catalytic transformation. Treatment of Pd(P(Bu)) with HCN in THF provided two Pd-hydride complexes, (P(Bu))Pd(H)(CN), and [(P(Bu))Pd(H)]Pd(CN), both of which were isolated and characterised by NMR spectroscopy and X-ray crystal structure analysis. When the same reaction was performed in a THF : water mixture in the presence of KOAc, only (P(Bu))Pd(H)(CN) was formed. Subjection of this cyano hydride metal complex with the oxidative addition complex (P(Bu))Pd(Ph)(Br) in a 1 : 1 ratio in THF led to a transmetallation step with the formation of (P(Bu))Pd(H)(Br) and C-benzonitrile from a reductive elimination step. These experiments suggest the possibility of a catalytic cycle involving initially the formation of two Pd(ii)-species from the oxidative addition of L Pd(0) into HCN and an aryl bromide followed by a transmetallation step to L Pd(Ar)(CN) and L Pd(H)(Br), which both reductively eliminate, the latter in the presence of KOAc, to generate the benzonitrile and L Pd(0).

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5855124PMC
http://dx.doi.org/10.1039/c7sc03912cDOI Listing

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