| Literature DB >> 27600354 |
Xavier Just-Baringo1, Jemma Clark1, Matthias J Gutmann2, David J Procter3.
Abstract
Seven-membered lactones undergo selective SmI2 -H2 O-promoted radical cyclization to form substituted cyclooctanols. The products arise from an exo-mode of cyclization rather than the usual endo-attack employed in the few radical syntheses of cyclooctanes. The process is terminated by the quenching of a chiral benzylic samarium. A labeling experiment and neutron diffraction study have been used for the first time to probe the configuration and highly diastereoselective deuteration of a chiral organosamarium intermediate.Entities:
Keywords: cyclization; cyclooctanes; neutron diffraction; radicals; samarium diiodide
Year: 2016 PMID: 27600354 PMCID: PMC5113801 DOI: 10.1002/anie.201606792
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Scheme 1Natural products containing cyclooctane rings.
Scheme 2A) 8‐Endo cyclizations dominate cyclooctane synthesis under radical conditions. B) A proposed 5‐exo radical cyclization approach to cyclooctanes and the challenges involved.
Cyclooctanoid synthesis by 5‐exo‐trig radical cyclization of seven‐membered lactones with SmI2–H2O.[a]
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[a] Conditions: SmI2 (8 equiv, 2‐fold excess), THF, H2O (800 equiv), room temperature. Isolated yields for 2 steps. Diastereoselectivities were determined from 1H NMR spectra of crude product mixtures.
Scheme 3The impact of lactone conformation on the efficiency of radical cyclization.
Scheme 4Proposed mechanism and rationale for the origin of diastereoselectivity in the radical cyclization.
Scheme 5Proposed stereoretentive quenching of a chiral organosamarium: neutron scattering studies.