Catalytic asymmetric intramolecular propargylation of cyclopropanols to access the cuparane core
The catalytic asymmetric propargylation of enol(ate) intermediates is a well-established method for the synthesis of α-propargyl-substituted carbonyl compounds. However, the propargylation of homo-enol(ate) or its equivalents for the synthesis of β-propargyl-substituted carbonyl compounds remains un...
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Veröffentlicht in: | Chemical science (Cambridge) 2024-07, Vol.15 (28), p.1963-1968 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The catalytic asymmetric propargylation of enol(ate) intermediates is a well-established method for the synthesis of α-propargyl-substituted carbonyl compounds. However, the propargylation of homo-enol(ate) or its equivalents for the synthesis of β-propargyl-substituted carbonyl compounds remains underdeveloped. A catalytic enantioselective decarboxylative intramolecular propargylation of cyclopropanols has been developed using a PyBox-complexed copper catalyst. This reaction offers an effective approach to assemble a cyclopentanone skeleton bearing an all-carbon quaternary stereogenic center and an adjacent quaternary
gem
-dimethyl carbon center, which is the core scaffold of the naturally occurring cuparenoids. Key to the success of this protocol is the use of a new structurally optimized PyBox ligand. This study represents the first example of catalytic asymmetric intramolecular propargylation of cyclopropanols.
The catalytic asymmetric propargylation of cyclopropanols has been developed using a new PyBox ligand, yielding cyclopentanones with an all-carbon quaternary stereogenic center and an adjacent quaternary
gem
-dimethyl carbon center. |
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ISSN: | 2041-6520 2041-6539 |
DOI: | 10.1039/d4sc02504k |