4.8 Article

Ni-Catalyzed Carboxylation of C(sp2)-S Bonds with CO2: Evidence for the Multifaceted Role of Zn

Journal

ACS CATALYSIS
Volume 10, Issue 3, Pages 2117-2123

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acscatal.9b05141

Keywords

carboxylation; nickel; C-S cleavage; carbon dioxide; zinc

Funding

  1. JSPS KAKENHI Grant [JP18K14212, JP16H04109, JP18H04254, JP18H04409, JP19H00895]
  2. JSPS
  3. JST CREST Grant, Japan [JPMJCR19R4]
  4. ICIQ FEDER/MICIU [AEI/PGC2018-096839-B-100]
  5. la Caixa Foundation [100010434, LCF/B10, 1 SO15/52260010]
  6. la Caixa

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Nickel-catalyzed reductive carboxylation reactions of aryl electrophiles typically require the use of metallic reducing agents. At present, the prevailing perception is that these serve as both a source of electrons and as a source of Lewis acids that may aid CO2 insertion into the Ni-C bond. Herein, we provide evidence for the in situ formation of organometallic species from the metallic reductant, a step that has either been ruled out or has been unexplored in catalytic carboxylation reactions with metal powder reductants. Specifically, we demonstrate that Zn(O) acts as a reductant and that Zn(II) generates arylzinc species that might play a role in the C(sp(2))-S carboxylation of arylsulfonium salts. Overall, the reductive Ni-catalyzed C(sp(2))-S carboxylation reaction proceeds under mild conditions in a non-amide solvent, displays a wide substrate scope, and can be applied to the formal para C-H carboxylation of arenes.

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