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Recent developments in nickel-catalyzed intermolecular dicarbofunctionalization of alkenes

Chemical Science · 2020 · Vol. 11(17) · pp. 4287–4296
Joseph DerosaOmar ApolinarTaeho KangVan TranKeary M. Engle

Abstract

Nickel-catalyzed three-component alkene difunctionalization has rapidly emerged as a powerful tool for forging two C-C bonds in a single reaction. Building upon the powerful modes of bond construction in traditional two-component cross-coupling, various research groups have demonstrated the versatility of nickel in enabling catalytic 1,2-dicarbofunctionalization using a wide range of carbon-based electrophiles and nucleophiles and in a fully intermolecular fashion. Though this area has emerged only recently, the last few years have witnessed a proliferation of publications on this topic, underscoring the potential of this strategy to develop into a general platform that offers high regio- and stereoselectivity. This minireview highlights the recent progress in the area of intermolecular 1,2-dicarbofunctionalization of alkenes <i>via</i> nickel catalysis and discusses lingering challenges within this reactivity paradigm.

Catalytic C–H Functionalization MethodsCatalytic Cross-Coupling ReactionsCatalytic Alkyne ReactionsNickelIntermolecular forceCatalysisChemistryCombinatorial chemistryComputational chemistryOrganic chemistryMolecule

Funding

  • National Science Foundation
  • Alfred P. Sloan Foundation
  • Kwanjeong Educational Foundation
  • Division of Chemistry
Citations
477
FWCI
34.05
field-weighted impact
References
58
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100%
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