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Development of an Operationally Simple, Scalable, and HCN-Free Transfer Hydrocyanation Protocol Using an Air-Stable Nickel Precatalyst

Authors :
Julia C. Reisenbauer
Benjamin N. Bhawal
Nicola Jelmini
Bill Morandi
Source :
Organic Process Research and Development, Organic Process Research & Development, 26 (4)
Publication Year :
2022
Publisher :
American Chemical Society (ACS), 2022.

Abstract

Hydrocyanation reactions enable access to synthetically valuable nitriles from readily available alkene precursors. However, hydrocyanation reactions using hydrogen cyanide (HCN) or similarly toxic reagents on laboratory scale can be particularly challenging due to their hazardous nature. In addition, such processes typically require air- and temperature-sensitive Ni(0) precatalysts, further reducing the operational simplicity of this transformation. Herein, we report a HCN-free transfer hydrocyanation of alkenes and alkynes that employs commercially available aliphatic nitriles as sacrificial HCN donors in combination with a catalytic amount of air-stable and inexpensive NiCl2as a precatalyst and a cocatalytic Lewis acid. The scalability and robustness of the catalytic process were demonstrated by the hydrocyanation of α-methylstyrene on a 100 mmol scale (11.4 g of product obtained) using 1 mol % of the Ni catalyst. In addition, the feasibility of the dehydrocyanation protocol using the air-stable Ni(II) precatalyst and norbornadiene as a sacrificial acceptor was showcased by the selective conversion of an aliphatic nitrile into the corresponding alkene.<br />Organic Process Research & Development, 26 (4)<br />ISSN:1083-6160<br />ISSN:1520-586X

Details

ISSN :
1520586X and 10836160
Volume :
26
Database :
OpenAIRE
Journal :
Organic Process Research & Development
Accession number :
edsair.doi.dedup.....84e7d5fa6af404aa41ef49425b618cee
Full Text :
https://doi.org/10.1021/acs.oprd.1c00442