General pyrrolidine synthesis via iridium-catalyzed reductive azomethine ylide generation from tertiary amides and lactams

Symplectic ID
1185360
Source
Ora (Hyrax)
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Last Synced with Symplectic
Monday, 31 August, 2026 - 16:43
DOI
10.1021/acscatal.1c01589
Publication Date
Wednesday, 9 June, 2021
First Page
7489
Last Page
7497
Keywords
pyrrolidines
polycyclic amine
azomethine ylide
amide reduction
[3+2] cycloaddition
density functional calculations
Vaska's complex
Authors
Yamazaki, K
Gabriel, P
Di Carmine, G
Pedroni, J
Farizyan, M
Hamlin, TA
Dixon, DJ
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0
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Abstract
An iridium-catalyzed reductive generation of both stabilized and unstabilized azomethine ylides and their application to functionalized pyrrolidine synthesis via [3 + 2] dipolar cycloaddition reactions is described. Proceeding under mild reaction conditions from both amide and lactam precursors possessing a suitably positioned electron-withdrawing or a trimethylsilyl group, using 1 mol% Vaska’s complex [IrCl(CO)(PPh3)2] and tetramethyldisiloxane (TMDS) as a terminal reductant, a broad range of (un)stabilized azomethine ylides were accessible. Subsequent regio- and diastereoselective, inter- and intramolecular dipolar cycloaddition reactions with variously substituted electron-deficient alkenes enabled ready and efficient access to structurally complex pyrrolidine architectures. Density functional theory (DFT) calculations of the dipolar cycloaddition reactions uncovered an intimate balance between asynchronicity and interaction energies of transition structures, which ultimately control the unusual selectivities observed in certain cases.
Publisher
American Chemical Society
Journal Title
ACS Catalysis
eISSN
2155-5435
Volume
11
Issue
12
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uuid_99f56a40-3da5-4752-958b-4c7b2aa7dfed
Publication Status
Published
Open access
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chem0513