## Abstract Im Gegensatz zu Pseudojonon **2** können das Isomere **1** und dessen Methylhomologe direkt durch Umsetzung substituierter 7‐Octen‐1‐in‐3‐ole **6** mit Acetessigestern oder Diketen ohne Bildung störender Nebenprodukte hergestellt werden. Bei Zusatz organischer Säuren werden bevorzugt di
Synthesen und Umsetzungen von 2,6-Epoxy-4H-3-benzoxocin-4-onen
✍ Scribed by Wünsch, Bernhard ;Bauschke, Gerd
- Publisher
- John Wiley and Sons
- Year
- 1992
- Tongue
- English
- Weight
- 596 KB
- Volume
- 1992
- Category
- Article
- ISSN
- 0947-3440
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✦ Synopsis
Syntheses and Transformations of 2,6‐Epoxy‐4__H__‐3‐benzoxocin‐4‐ones
Four variations for the preparation of 5 are described: acid‐catalyzed cyclisation of the methoxy acid 4a, base‐catalyzed lactonisation of the hydroxy ester 6b, DCC‐mediated dehydration of the hydroxy acid 6a and PCC oxidation of the hemiacetals 17a and 17b. By three steps the key intermediate 4a is prepared by addition of the lithium enolate of methyl acetate to the aldehyde 7 with subsequent cyclisation and saponification. Alternatively, addition of the acetic acid dianion to 7 followed by acidic work‐up yields 4a in a one‐pot procedure. Hydrolysis of 4a and 4b with dilute HCl gives the hemiacetals 6a and 6b, respectively. After deprotonation with LDA, 5b reacts with CH~3~I and aldehydes to afford the 5‐substituted epoxybenzoxocinones 18 and 20.
📜 SIMILAR VOLUMES
2,6‐Epoxy‐3‐benzoxocin‐4‐ol Derivatives by Double Intramolecular Formation of Hemiacetals With dilute HCl the hydroxydialdehyde derivatives 10a‐c are cyclised to give the tricyclic hemiaccetals 6a–c. This double intramolecular formation of hemiacetals succeeds well, if R in 10 is not hydrogen; if R