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Visible-Light-Enabled Direct Decarboxylative N-Alkylation.


ABSTRACT: The development of efficient and selective C-N bond-forming reactions from abundant feedstock chemicals remains a central theme in organic chemistry owing to the key roles of amines in synthesis, drug discovery, and materials science. Herein, we present a dual catalytic system for the N-alkylation of diverse aromatic carbocyclic and heterocyclic amines directly with carboxylic acids, by-passing their preactivation as redox-active esters. The reaction, which is enabled by visible-light-driven, acridine-catalyzed decarboxylation, provides access to N-alkylated secondary and tertiary anilines and N-heterocycles. Additional examples, including double alkylation, the installation of metabolically robust deuterated methyl groups, and tandem ring formation, further demonstrate the potential of the direct decarboxylative alkylation (DDA) reaction.

SUBMITTER: Nguyen VT 

PROVIDER: S-EPMC7200280 | biostudies-literature | 2020 May

REPOSITORIES: biostudies-literature

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Visible-Light-Enabled Direct Decarboxylative N-Alkylation.

Nguyen Vu T VT   Nguyen Viet D VD   Haug Graham C GC   Vuong Ngan T H NTH   Dang Hang T HT   Arman Hadi D HD   Larionov Oleg V OV  

Angewandte Chemie (International ed. in English) 20200317 20


The development of efficient and selective C-N bond-forming reactions from abundant feedstock chemicals remains a central theme in organic chemistry owing to the key roles of amines in synthesis, drug discovery, and materials science. Herein, we present a dual catalytic system for the N-alkylation of diverse aromatic carbocyclic and heterocyclic amines directly with carboxylic acids, by-passing their preactivation as redox-active esters. The reaction, which is enabled by visible-light-driven, ac  ...[more]

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