化学
环丙烷
环丙烷化
戒指(化学)
高价分子
烯醇
立体化学
接受者
产量(工程)
重氮乙酸乙酯
药物化学
催化作用
试剂
有机化学
物理
冶金
材料科学
凝聚态物理
作者
Christian Brand,Gesche Rauch,M. Zanoni,Birger Dittrich,Daniel B. Werz
摘要
Exocyclic enol ethers served as starting materials for the synthesis of [n,5]-spiroketals (n = 5, 6). A metal-mediated cyclopropanation using ethyl diazoacetate afforded spiroannelated cyclopropane derivatives bearing an ester group. A reduction of the corresponding ester by LiAlH4, followed by subsequent oxidation using hypervalent iodine reagents, produced [n,5]-spiroketals in moderate to good yields. The key step within this three-step sequence is the ring enlargement of the three-membered ring with an oxygen donor and a carbonyl acceptor group into the five-membered enol ether system. Catalytic amounts of the Lewis acid Yb(OTf)3 facilitate the ring enlargement and increase the yield of the corresponding spiroketal in many cases. When Yb(OTf)3 was used, our experiments revealed an open transition state rather than a concerted mechanism because the stereochemistry of the spirocenter was not conserved during the ring enlargement. As a result, the thermodynamically more favored anomeric [n,5]-spiroketal was observed as the major product. All the structures were established unambiguously by NOESY experiments.
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