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Imidazolidine Hydride Donors in Palladium-Catalyzed Alkyne Hydroarylation.


ABSTRACT: Aldehyde-derived imidazolidines participate as hydride donors in intramolecular reductive Heck-type reactions. N,N'-Diphenylimidazolidines prepared from ortho-alkynyl benzaldehydes underwent regio- and stereoselective palladium-catalyzed hydroarylation followed by formal 1,5-hydride transfer and reductive elimination to afford substituted alkenes and imidazolium moieties, the latter conveniently converted in situ to ring-opened benzanilides to simplify product isolation. Internal alkynes were converted to trisubstituted alkenes via a syn hydroarylation process, while a terminal alkyne was converted to a cis alkene via a formal trans hydroarylation reaction. Benzanilide products could be converted to carboxylic acid derivatives under basic conditions, resulting in the net conversion of alkynyl aldehydes to alkenyl carboxylic acids. A styrene derivative with an attached N,N'-dimethylbenzimidazoline hydride donor was also found to undergo an analogous hydroarylation/benzimidazoline oxidation to give a diarylethane product.

SUBMITTER: Tun SL 

PROVIDER: S-EPMC9490851 | biostudies-literature | 2022 Jun

REPOSITORIES: biostudies-literature

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Imidazolidine Hydride Donors in Palladium-Catalyzed Alkyne Hydroarylation.

Tun Soe L SL   Mariappan S V Santhana SVS   Pigge F Christopher FC  

The Journal of organic chemistry 20220601 12


Aldehyde-derived imidazolidines participate as hydride donors in intramolecular reductive Heck-type reactions. <i>N</i>,<i>N</i>'-Diphenylimidazolidines prepared from <i>ortho</i>-alkynyl benzaldehydes underwent regio- and stereoselective palladium-catalyzed hydroarylation followed by formal 1,5-hydride transfer and reductive elimination to afford substituted alkenes and imidazolium moieties, the latter conveniently converted in situ to ring-opened benzanilides to simplify product isolation. Int  ...[more]

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