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Rapid heteroatom transfer to arylmetals utilizing multifunctional reagent scaffolds.


ABSTRACT: Arylmetals are highly valuable carbon nucleophiles that are readily and inexpensively prepared from aryl halides or arenes and widely used on both laboratory and industrial scales to react directly with a wide range of electrophiles. Although C-C bond formation has been a staple of organic synthesis, the direct transfer of primary amino (-NH2) and hydroxyl (-OH) groups to arylmetals in a scalable and environmentally friendly fashion remains a formidable synthetic challenge because of the absence of suitable heteroatom-transfer reagents. Here, we demonstrate the use of bench-stable N-H and N-alkyl oxaziridines derived from readily available terpenoid scaffolds as efficient multifunctional reagents for the direct primary amination and hydroxylation of structurally diverse aryl- and heteroarylmetals. This practical and scalable method provides one-step synthetic access to primary anilines and phenols at low temperature and avoids the use of transition-metal catalysts, ligands and additives, nitrogen-protecting groups, excess reagents and harsh workup conditions.

SUBMITTER: Gao H 

PROVIDER: S-EPMC5484060 | biostudies-literature | 2017 Jul

REPOSITORIES: biostudies-literature

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Rapid heteroatom transfer to arylmetals utilizing multifunctional reagent scaffolds.

Gao Hongyin H   Zhou Zhe Z   Kwon Doo-Hyun DH   Coombs James J   Jones Steven S   Behnke Nicole Erin NE   Ess Daniel H DH   Kürti László L  

Nature chemistry 20161128 7


Arylmetals are highly valuable carbon nucleophiles that are readily and inexpensively prepared from aryl halides or arenes and widely used on both laboratory and industrial scales to react directly with a wide range of electrophiles. Although C-C bond formation has been a staple of organic synthesis, the direct transfer of primary amino (-NH<sub>2</sub>) and hydroxyl (-OH) groups to arylmetals in a scalable and environmentally friendly fashion remains a formidable synthetic challenge because of  ...[more]

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