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Asymmetric Synthesis of Bicyclic Nitrocyclopropanes from Primary Nitro Compounds and Stereoselective Formation of Tetrahydro‑2H‑cyclopenta[b]furans via Ring Expansion/Cyclization Reaction

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Figshare2016-05-27 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Asymmetric_Synthesis_of_Bicyclic_Nitrocyclopropanes_from_Primary_Nitro_Compounds_and_Stereoselective_Formation_of_Tetrahydro_2_i_H_i_cyclopenta_i_b_i_furans_via_Ring_Expansion_Cyclization_Reaction/3395302
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Optically active bicyclic nitrocyclopropanes are readily prepared from primary chiral nitro compounds, prepared by the conjugate addition of propionaldehyde to a nitro alkene in the presence of proline-derived organocatalysts. The one-step cyclopropanation took place smoothly in a highly stereoselective manner regardless of the stereogenic center adjacent to the allylic unit. Although the allylation reaction catalyzed by BF3·OEt2 provides a mixture of two possible diastereomers, subsequent oxidation of the alcoholic carbon after the formation of nitrocyclopropanes gave diastereomerically pure single products. As a result, separation of the diastereomers during the reaction sequence is unnecessary. Baeyer–Villiger oxidation of the bicyclic nitrocyclopropane ketones followed by enolization resulted in stereoselective formation of a novel cyclopenta­[b]­furan ring in good yield via ring expansion followed by transannular nucleophilic cyclization.
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2016-05-27
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