Methods for Asymmetric Olefination Reactions; Development and Application to Natural Product Synthesis
This thesis deals with the development and application of methods for asymmetric olefinations, in particular Horner-Wadsworth-Emmons (HWE) reactions, in the synthesis of certain natural products. Relying on asymmetric HWE reactions to access key building blocks, two natu-ral products, pyranicin and...
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KTH, Organisk kemi
2006
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ndltd-UPSALLA1-oai-DiVA.org-kth-40882013-01-08T13:06:38ZMethods for Asymmetric Olefination Reactions; Development and Application to Natural Product SynthesisengStrand, DanielKTH, Organisk kemiStockholm : KTH2006Antitumor agentsAsymmetric Horner-Wadsworth-EmmonsDesymmetrizationMetal-catalyzed olefinationMucocinPalladium-catalyzed allylic substitutionParallel kinetic resolutionPyranicinPyragonicinRheniumStereoconvergent synthesisStereodivergent synthesisStereoselective synthesisTetrahydropyranWittig reactionOrganic chemistryOrganisk kemiThis thesis deals with the development and application of methods for asymmetric olefinations, in particular Horner-Wadsworth-Emmons (HWE) reactions, in the synthesis of certain natural products. Relying on asymmetric HWE reactions to access key building blocks, two natu-ral products, pyranicin and pyragonicin, were synthesized from common late intermediates. The utility of the HWE reactions is highlighted through a desymmetrization of a meso-dialdehyde as well as a stereoconvergent reaction sequence employing the sequential use of a HWE parallel kinetic resolution fol-lowed by a Pd-catalyzed allylic substitution to convergently transform a race-mate to a single stereoisomer of the product. Methodological extensions of these syntheses include a divergent synthesis of 2,3,6-substituted tetrahydropyran derivatives and application of Zn-mediated asymmetric alkynylations to install key stereocenters. Synthetic studies directed towards a more complex target, mucocin, employing a triply convergent strategy, have also been performed. Expedient and reliable routes to three key fragments were developed, as well as methodology to access to all nine stereocenters. The fragment coupling to assemble the oligonuclear core still remains a challenge, however. Key features of the synthesis include the formation of two fragments from a common precursor derived from an asymmetric HWE desymmetrization, Zn-mediatedated asymmetric alkynylations, a stereoselective oxa-Michael cyclization dependent on a simultaneous protective group migration and a one-pot procedure for the synthesis of a TBS protected iodohydrin from a terminal epoxide. An investigation of the possibilities for developing a transition metal catalyzed asymmetric olefination using a chiral Re-complex is outlined. An enantioen-riched BINAP-Re complex was synthesized and characterized by X-ray. An efficient protocol for the olefination of functionalized aldehydes employing this catalyst was developed, but gave racemic products in two attempted kinetic resolutions of racemic substrates, most likely due to a reaction pathway proceeding via a non-metal associated phosphonium ylide. QC 20100921Doctoral thesis, comprehensive summaryinfo:eu-repo/semantics/doctoralThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-4088urn:isbn:91-7178-427-6Trita-IOK, 1100-7974 ; 2006:103application/pdfinfo:eu-repo/semantics/openAccess |
collection |
NDLTD |
language |
English |
format |
Doctoral Thesis |
sources |
NDLTD |
topic |
Antitumor agents Asymmetric Horner-Wadsworth-Emmons Desymmetrization Metal-catalyzed olefination Mucocin Palladium-catalyzed allylic substitution Parallel kinetic resolution Pyranicin Pyragonicin Rhenium Stereoconvergent synthesis Stereodivergent synthesis Stereoselective synthesis Tetrahydropyran Wittig reaction Organic chemistry Organisk kemi |
spellingShingle |
Antitumor agents Asymmetric Horner-Wadsworth-Emmons Desymmetrization Metal-catalyzed olefination Mucocin Palladium-catalyzed allylic substitution Parallel kinetic resolution Pyranicin Pyragonicin Rhenium Stereoconvergent synthesis Stereodivergent synthesis Stereoselective synthesis Tetrahydropyran Wittig reaction Organic chemistry Organisk kemi Strand, Daniel Methods for Asymmetric Olefination Reactions; Development and Application to Natural Product Synthesis |
description |
This thesis deals with the development and application of methods for asymmetric olefinations, in particular Horner-Wadsworth-Emmons (HWE) reactions, in the synthesis of certain natural products. Relying on asymmetric HWE reactions to access key building blocks, two natu-ral products, pyranicin and pyragonicin, were synthesized from common late intermediates. The utility of the HWE reactions is highlighted through a desymmetrization of a meso-dialdehyde as well as a stereoconvergent reaction sequence employing the sequential use of a HWE parallel kinetic resolution fol-lowed by a Pd-catalyzed allylic substitution to convergently transform a race-mate to a single stereoisomer of the product. Methodological extensions of these syntheses include a divergent synthesis of 2,3,6-substituted tetrahydropyran derivatives and application of Zn-mediated asymmetric alkynylations to install key stereocenters. Synthetic studies directed towards a more complex target, mucocin, employing a triply convergent strategy, have also been performed. Expedient and reliable routes to three key fragments were developed, as well as methodology to access to all nine stereocenters. The fragment coupling to assemble the oligonuclear core still remains a challenge, however. Key features of the synthesis include the formation of two fragments from a common precursor derived from an asymmetric HWE desymmetrization, Zn-mediatedated asymmetric alkynylations, a stereoselective oxa-Michael cyclization dependent on a simultaneous protective group migration and a one-pot procedure for the synthesis of a TBS protected iodohydrin from a terminal epoxide. An investigation of the possibilities for developing a transition metal catalyzed asymmetric olefination using a chiral Re-complex is outlined. An enantioen-riched BINAP-Re complex was synthesized and characterized by X-ray. An efficient protocol for the olefination of functionalized aldehydes employing this catalyst was developed, but gave racemic products in two attempted kinetic resolutions of racemic substrates, most likely due to a reaction pathway proceeding via a non-metal associated phosphonium ylide. === QC 20100921 |
author |
Strand, Daniel |
author_facet |
Strand, Daniel |
author_sort |
Strand, Daniel |
title |
Methods for Asymmetric Olefination Reactions; Development and Application to Natural Product Synthesis |
title_short |
Methods for Asymmetric Olefination Reactions; Development and Application to Natural Product Synthesis |
title_full |
Methods for Asymmetric Olefination Reactions; Development and Application to Natural Product Synthesis |
title_fullStr |
Methods for Asymmetric Olefination Reactions; Development and Application to Natural Product Synthesis |
title_full_unstemmed |
Methods for Asymmetric Olefination Reactions; Development and Application to Natural Product Synthesis |
title_sort |
methods for asymmetric olefination reactions; development and application to natural product synthesis |
publisher |
KTH, Organisk kemi |
publishDate |
2006 |
url |
http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-4088 http://nbn-resolving.de/urn:isbn:91-7178-427-6 |
work_keys_str_mv |
AT stranddaniel methodsforasymmetricolefinationreactionsdevelopmentandapplicationtonaturalproductsynthesis |
_version_ |
1716508956362276864 |