2024-06-10
Dichloromethane, as a readily available and inexpensive C1 synthon is proposed as a powerful building block for cyclopropanation of alkenes under mild conditions. Herein, we report a highly efficient and versatile dual photoredox system, involving a nickel aminopyridine coordination complex and a photocatalyst, for the cyclopropanation of aromatic olefins using dichloromethane, under visible-light irradiation. The cyclopropanation protocol has been successfully applied at gram scale. Mechanistic studies suggest a Ni(II) pyridyl radical complex as the key intermediate for the homolytic cleavage of the Csp3−Cl bond, generating a chloromethyl radical that is captured by the olefin coupling partner. Our findings also highlight the versatility of this methodology. By directing the radical/polar crossover process, we were able to selectively drive the reaction towards either the formation of cyclopropyl derivatives or the corresponding non-cyclic alkyl chloride products. The methodology also successfully apply to geminal dichloroalkanes, including the formation of spiro[2,2] compounds. Moreover, our methodology extends to the synthesis of deuterium-labelled cyclopropanes, demonstrating its utility in isotopic labelling and broadening its applicability in chemical synthesis and drug development.
Article
Accepted version
English
8 p.
Wiley-VCH
CERCA Programme/Generalitat de Catalunya
ICIQ Foundation
MICINN through Severo Ochoa Excellence Accreditation 2020 - 2023 (CEX2019-000925-S, MIC/AEI)
the European Research Foundation for H2020 project ERC-2015-CoG GREENLIGHT_REDCAT 648304, (J.L.-F.)
the Spanish Ministry of Universities for a FPI fellowship to J.A and projects (PID2022-140142OB-I00, PID2019-110050RB-I00 and CTQ2016-80038-R), an FPU fellowship FPU16/04234 (S.F.)
China Scholarship Council for a fellowship to S.S. (ref. nº 201908310178)
AGAUR (2021-SGR- 01260, J.L.-F.)
CC-BY 4.0
Papers [1286]