Investigating the chemistry of pyridinium ylides

This thesis describes investigation into catalytic formation of pyridinium ylides from diazo compounds and their subsequent reactivity. In particular, cycloaddition reactions with electrophilic alkenes are performed to generate tetrahydroindolizines that can be transformed into indolzidines by reduc...

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Main Author: Abdullah, Rasha Azzam
Published: University of Nottingham 2018
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Online Access:https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.740729
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spelling ndltd-bl.uk-oai-ethos.bl.uk-7407292019-01-08T03:33:37ZInvestigating the chemistry of pyridinium ylidesAbdullah, Rasha Azzam2018This thesis describes investigation into catalytic formation of pyridinium ylides from diazo compounds and their subsequent reactivity. In particular, cycloaddition reactions with electrophilic alkenes are performed to generate tetrahydroindolizines that can be transformed into indolzidines by reduction. Pyridinium ylides have been shown to be very reactive intermediates that are able to generate complex molecules with excellent yield and diastereoselectivity. The introduction section provides a background on the chemistry of pyridinium ylides. This section also reports on development in the field of 1,3-dipolar cycloaddition chemistry of pyridinium ylides. A background to the generation of the pyridinium ylides by in situ decomposition of diazo compounds with transition metal catalysts was described. The results and discussion section is divided into three sections. Section one describes metal-catalysed decomposition of diazo compounds to produce pyridinium ylides in situ. Performing this reaction in the presence of dipolarophiles gives tetrahydroindolizine cycloadducts in good yield with excellent diastereoselectivity. Subsequent reduction of the 1,2-dihydropyridine moiety component of the resulting cycloadducts is also demonstrated. Crystal structures of some of the resulting indolizidine products were valuable for assigning relative stereochemistry. Section two describes attempts towards an asymmetric (3+2) dipolar cycloaddition, using pyridinium ylides produced by the in-situ decomposition of diazo compounds with either chiral transition metal catalysts or achiral catalysts in the presence of chiral Brønsted acids. We started our investigation by exploring how acids with various pKa’s e.g. camphorsulfonic acid, benzoic acid and p-nitro benzoic acid influenced the reaction between pyridine and diazo compounds. Finally, section three describes attempts to develop new multicomponent catalytic reactions with mono and di-substituted diazo compounds to access structurally complex pyridinium salts via in situ C-alkylation of catalytically generated pyridinium ylides.QD241 Organic chemistryUniversity of Nottinghamhttps://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.740729http://eprints.nottingham.ac.uk/49095/Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic QD241 Organic chemistry
spellingShingle QD241 Organic chemistry
Abdullah, Rasha Azzam
Investigating the chemistry of pyridinium ylides
description This thesis describes investigation into catalytic formation of pyridinium ylides from diazo compounds and their subsequent reactivity. In particular, cycloaddition reactions with electrophilic alkenes are performed to generate tetrahydroindolizines that can be transformed into indolzidines by reduction. Pyridinium ylides have been shown to be very reactive intermediates that are able to generate complex molecules with excellent yield and diastereoselectivity. The introduction section provides a background on the chemistry of pyridinium ylides. This section also reports on development in the field of 1,3-dipolar cycloaddition chemistry of pyridinium ylides. A background to the generation of the pyridinium ylides by in situ decomposition of diazo compounds with transition metal catalysts was described. The results and discussion section is divided into three sections. Section one describes metal-catalysed decomposition of diazo compounds to produce pyridinium ylides in situ. Performing this reaction in the presence of dipolarophiles gives tetrahydroindolizine cycloadducts in good yield with excellent diastereoselectivity. Subsequent reduction of the 1,2-dihydropyridine moiety component of the resulting cycloadducts is also demonstrated. Crystal structures of some of the resulting indolizidine products were valuable for assigning relative stereochemistry. Section two describes attempts towards an asymmetric (3+2) dipolar cycloaddition, using pyridinium ylides produced by the in-situ decomposition of diazo compounds with either chiral transition metal catalysts or achiral catalysts in the presence of chiral Brønsted acids. We started our investigation by exploring how acids with various pKa’s e.g. camphorsulfonic acid, benzoic acid and p-nitro benzoic acid influenced the reaction between pyridine and diazo compounds. Finally, section three describes attempts to develop new multicomponent catalytic reactions with mono and di-substituted diazo compounds to access structurally complex pyridinium salts via in situ C-alkylation of catalytically generated pyridinium ylides.
author Abdullah, Rasha Azzam
author_facet Abdullah, Rasha Azzam
author_sort Abdullah, Rasha Azzam
title Investigating the chemistry of pyridinium ylides
title_short Investigating the chemistry of pyridinium ylides
title_full Investigating the chemistry of pyridinium ylides
title_fullStr Investigating the chemistry of pyridinium ylides
title_full_unstemmed Investigating the chemistry of pyridinium ylides
title_sort investigating the chemistry of pyridinium ylides
publisher University of Nottingham
publishDate 2018
url https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.740729
work_keys_str_mv AT abdullahrashaazzam investigatingthechemistryofpyridiniumylides
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