A facile synthetic route to two seco-eudesmane, 4, 5-dioxo-10-epi-4, 5-seco-γ- eudesmane (1) and 4, 5-dioxo-10-epi-4, 5-seco-γ-eudesmol (2) from (+)-dihydrocarvone has been described. Avoiding expensive reagents, th...A facile synthetic route to two seco-eudesmane, 4, 5-dioxo-10-epi-4, 5-seco-γ- eudesmane (1) and 4, 5-dioxo-10-epi-4, 5-seco-γ-eudesmol (2) from (+)-dihydrocarvone has been described. Avoiding expensive reagents, this highly economic method especially suits for the synthesis of 4, 5-seco-eudesman-type and ophianon-type sesquiterpenes with a double bond at position 11 and 12.展开更多
An alternative route for the synthesis of (-)-10-epi-α-cyperone 1 starting from (+)- dihydrocarvone 2 is described by using an asymmetric Michael addition as a key step. The route features more efficiently and can be...An alternative route for the synthesis of (-)-10-epi-α-cyperone 1 starting from (+)- dihydrocarvone 2 is described by using an asymmetric Michael addition as a key step. The route features more efficiently and can be performed in large scale.展开更多
基金This work was financially supported by the National Natural Science Foundation of China(No.20272021).
文摘A facile synthetic route to two seco-eudesmane, 4, 5-dioxo-10-epi-4, 5-seco-γ- eudesmane (1) and 4, 5-dioxo-10-epi-4, 5-seco-γ-eudesmol (2) from (+)-dihydrocarvone has been described. Avoiding expensive reagents, this highly economic method especially suits for the synthesis of 4, 5-seco-eudesman-type and ophianon-type sesquiterpenes with a double bond at position 11 and 12.
文摘An alternative route for the synthesis of (-)-10-epi-α-cyperone 1 starting from (+)- dihydrocarvone 2 is described by using an asymmetric Michael addition as a key step. The route features more efficiently and can be performed in large scale.