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Photoredox radical conjugate addition of dithiane-2-carboxylate promoted by an iridium(iii) phenyl-tetrazole complex: a formal radical methylation of Michael acceptors.


ABSTRACT: A readily accessible iridium(iii) phenyl-tetrazole complex ([Ir(ptrz)2(tBu-bpy)]+, 2; Hptrz = 2-methyl-5-phenyl-tetrazole; tBu-bpy = 4,4'-di-tert-butyl-2,2'-bipyridine) is shown to be a versatile catalyst for a new photocatalytic Michael reaction. Under light irradiation in the presence of 2, a dithiane 2-carboxylic acid, obtained by simple hydrolysis of a commercially available ethyl ester, generates a 1,3-dithiane radical capable of performing addition to a variety of Michael acceptors (e.g., unsaturated ketones, esters, amides and malonates). This broad scope reaction with high yields is a formal photo-redox addition of the elusive methyl radical and the adducts obtained can be starting materials for a variety of functionalized products. The excited-state oxidation potential of catalyst 2 allows selective formation of radicals only from α-heterosubstituted carboxylates. Chemical modification of this metal complex can tune the electrochemical properties, opening a route to new highly selective catalytic photo-oxidation reactions.

SUBMITTER: Gualandi A 

PROVIDER: S-EPMC5364518 | biostudies-literature | 2017 Feb

REPOSITORIES: biostudies-literature

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Photoredox radical conjugate addition of dithiane-2-carboxylate promoted by an iridium(iii) phenyl-tetrazole complex: a formal radical methylation of Michael acceptors.

Gualandi Andrea A   Matteucci Elia E   Monti Filippo F   Baschieri Andrea A   Armaroli Nicola N   Sambri Letizia L   Cozzi Pier Giorgio PG  

Chemical science 20161103 2


A readily accessible iridium(iii) phenyl-tetrazole complex ([Ir(ptrz)<sub>2</sub>(<i>t</i>Bu-bpy)]<sup>+</sup>, <b>2</b>; Hptrz = 2-methyl-5-phenyl-tetrazole; <i>t</i>Bu-bpy = 4,4'-di-<i>tert</i>-butyl-2,2'-bipyridine) is shown to be a versatile catalyst for a new photocatalytic Michael reaction. Under light irradiation in the presence of <b>2</b>, a dithiane 2-carboxylic acid, obtained by simple hydrolysis of a commercially available ethyl ester, generates a 1,3-dithiane radical capable of perf  ...[more]

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