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Manganese-Catalyzed C(sp2)-H Borylation of Furan and Thiophene Derivatives

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Published
  • Luke Britton
  • Maciej Skrodzki
  • Gary S. Nichol
  • Andrew P. Dominey
  • Piotr Pawluć
  • Jamie H. Docherty
  • Stephen P. Thomas
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<mark>Journal publication date</mark>18/06/2021
<mark>Journal</mark>ACS Catalysis
Issue number12
Volume11
Number of pages8
Pages (from-to)6857-6864
Publication StatusPublished
Early online date27/05/21
<mark>Original language</mark>English

Abstract

Aryl boronic esters are bench-stable, platform building-blocks that can be accessed through metal-catalyzed aryl C(sp2)-H borylation reactions. C(sp2)-H bond functionalization reactions using rare- and precious-metal catalysts are well established, and while examples utilizing Earth-abundant alternatives have emerged, manganese catalysis remains lacking. The manganese-catalyzed C-H borylation of furan and thiophene derivatives is reported alongside an in situ activation method providing facile access to the active manganese hydride species. Mechanistic investigations showed that blue light irradiation directly affected catalysis by action at the metal center, that C(sp2)-H bond borylation occurs through a C-H metallation pathway, and that the reversible coordination of pinacolborane to the catalyst gave a manganese borohydride complex, which was as an off-cycle resting state.

Bibliographic note

Funding Information: S.P.T. thanks The Royal Society for a University Research Fellowship (RF191015). J.H.D. and S.P.T. acknowledge GSK and EPSRC (PIII0002) and The Royal Society (RF191015) for postdoctoral funding. L.B. acknowledges The Royal Society and The University of Edinburgh for a Ph.D. studentship (RF191015). M.S. acknowledges a Ph.D. studentship grant (POWR.03.02.00-00-I026/16) cofinanced by the European Union through the European Social Fund under the Operational Program Knowledge Education Development. Publisher Copyright: ©