Hydrolytic kinetic resolution of terminal mono- and bis-epoxides in the synthesis of insect pheromones: routes to (-)-(R)- and (+)-(S)-10-methyldodecyl acetate, (-)-(R)-10-methyl-2-tridecanone, (-)-(R)-(Z)-undec-6-en-2-ol (Nostrenol), (-)-(1R,7R)-1,7-dime


Autoria(s): Chow, S.; Kitching, W.
Data(s)

01/05/2002

Resumo

Hydrolytic kinetic resolution (HKR) of functionalised epoxides using (salen)Co(OAc) complexes provides enantiomerically enriched epoxides and diols, which have been transformed into important insect sex pheromones. In this general approach, (-)-(R)- and (+)-(S)-10-methyldodecyl acetates from the smaller tea tortrix moth were obtained, as was (-)-(R)-10-methyltridecan-2-one from the southern corn rootworm. The (S)-epoxide obtained from undec-1-en-6-yne was transformed to (-)-(R)-(Z)-undec-6-en-2-ol (Nostrenol) from ant-lions. HKR of appropriate bisepoxides was also investigated, and transformations of the resulting bisepoxides and epoxydiols provided (-)-(1R,7R)-1,7-dimethylnonylpropanoate from corn rootworms, (-)-(6R,12R)-6,12-dimethylpentadecan-2-one from the female banded cucumber beetle, and (-)-(2S,11S)-2,11-diacetoxytridecane and (+)-(2S,12S)-2,12-diacetoxytridecane from female pea-midges. (C) 2002 Elsevier Science Ltd. All rights reserved.

Identificador

http://espace.library.uq.edu.au/view/UQ:62013

Idioma(s)

eng

Publicador

Pergamon-Elsevier

Palavras-Chave #Chemistry, Inorganic & Nuclear #Chemistry, Organic #Chemistry, Physical #Southern Corn-rootworm #Tea Tortrix Moth #Banded Cucumber Beetle #Sex-pheromone #Enantioselective Synthesis #Asymmetric Catalysis #Identification #Intermediate #Bioactivity #Components #C1 #250301 Organic Chemical Synthesis #250302 Biological and Medical Chemistry #780103 Chemical sciences #0305 Organic Chemistry
Tipo

Journal Article