General method for iron-catalyzed multicomponent radical cascades-cross-couplings.

Symplectic ID
1304388
Source
Europe PubMed Central
Last Synced with Symplectic
Saturday, 12 September, 2026 - 23:41
DOI
10.1126/science.abj6005
Publication Date
Friday, 1 October, 2021
First Page
432
Last Page
439
Authors
Liu, L
Aguilera, MC
Lee, W
Youshaw, CR
Neidig, ML
Gutierrez, O
Authors list has been truncated
0
Editors list has been truncated
Abstract
Transition metal–catalyzed cross-coupling reactions are some of the most widely used methods in chemical synthesis. However, despite notable advantages of iron (Fe) as a potentially cheaper, more abundant, and less toxic transition metal catalyst, its practical application in multicomponent cross-couplings remains largely unsuccessful. We demonstrate 1,2-bis(dicyclohexylphosphino)ethane Fe–catalyzed coupling of α-boryl radicals (generated from selective radical addition to vinyl boronates) with Grignard reagents. Then, we extended the scope of these radical cascades by developing a general and broadly applicable Fe-catalyzed multicomponent annulation–cross-coupling protocol that engages a wide range of π-systems and permits the practical synthesis of cyclic fluorous compounds. Mechanistic studies are consistent with a bisarylated Fe(II) species being responsible for alkyl radical generation to initiate catalysis, while carbon-carbon bond formation proceeds between a monoarylated Fe(II) center and a transient alkyl radical.
ISSN
0036-8075
Journal Title
Science (New York, N.Y.)
eISSN
1095-9203
Volume
374
Issue
6566
ID at Source
MED:34672739
Publication Status
Published
Open access
Publication Date - Display month part?
Publication Date - Display day part?
SSO preference