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Photoactive electron donor-acceptor complex platform for Ni-mediated C(sp3)-C(sp2) bond formation.


ABSTRACT: A dual photochemical/nickel-mediated decarboxylative strategy for the assembly of C(sp3)-C(sp2) linkages is disclosed. Under light irradiation at 390 nm, commercially available and inexpensive Hantzsch ester (HE) functions as a potent organic photoreductant to deliver catalytically active Ni(0) species through single-electron transfer (SET) manifolds. As part of its dual role, the Hantzsch ester effects a decarboxylative-based radical generation through electron donor-acceptor (EDA) complex activation. This homogeneous, net-reductive platform bypasses the need for exogenous photocatalysts, stoichiometric metal reductants, and additives. Under this cross-electrophile paradigm, the coupling of diverse C(sp3)-centered radical architectures (including primary, secondary, stabilized benzylic, α-oxy, and α-amino systems) with (hetero)aryl bromides has been accomplished. The protocol proceeds under mild reaction conditions in the presence of sensitive functional groups and pharmaceutically relevant cores.

SUBMITTER: Kammer LM 

PROVIDER: S-EPMC8179655 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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Photoactive electron donor-acceptor complex platform for Ni-mediated C(sp<sup>3</sup>)-C(sp<sup>2</sup>) bond formation.

Kammer Lisa Marie LM   Badir Shorouk O SO   Hu Ren-Ming RM   Molander Gary A GA  

Chemical science 20210305 15


A dual photochemical/nickel-mediated decarboxylative strategy for the assembly of C(sp<sup>3</sup>)-C(sp<sup>2</sup>) linkages is disclosed. Under light irradiation at 390 nm, commercially available and inexpensive Hantzsch ester (HE) functions as a potent organic photoreductant to deliver catalytically active Ni(0) species through single-electron transfer (SET) manifolds. As part of its dual role, the Hantzsch ester effects a decarboxylative-based radical generation through electron donor-accep  ...[more]

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