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Investigation Of A Ring Fragmentation Reaction For The Synthesis Of Tethered Aldehyde Ynones And Medium Sized Cyclic Ynones And YnolidesBayir, Ali 01 January 2015 (has links)
The fragmentation of γ-silyloxy-β-hydroxy-α-diazoesters to provide tethered aldehyde ynoates was discovered and developed in Prof. Brewer's laboratory. This reaction is a Lewis acid mediated heterolytic cleavage of the Cβ-γ bond of a γ-silyloxy-β-hydroxy-α-diazocarbonyl functional group array contained in a ring compound.
This dissertation describes a further study of this ring fragmentation reaction and application of this fragmentation to the preparation of synthetically useful organic molecules. The purpose of this dissertation work was three fold. The first objective was to extend this ring fragmentation reaction to the synthesis of tethered aldehyde ynones by fragmenting various γ-silyloxy-β-hydroxy-α-diazo ketone compounds. The second objective was to develop a new way to make medium size rings by fragmenting fused bicyclic γ-silyloxy-β-hydroxy-α-diazo ketones. The final goal was to use this reaction to make medium size ynolides by fragmentation of fused bicyclic γ-silyloxy-β-hydroxy-α-diazo esters to provide core structures for medium-size lactones which are synthetically challenging to make using other available methods.
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Catalytic enantioselective synthesis of tertiary propargylic alcohols : Al-catalyzed asymmetric alkylation of pyridyl-ynones with dialkylzinc reagentsFriel, Donna Kay January 2008 (has links)
Thesis advisor: Amir H. Hoveyda / General and efficient methods for catalytic enantioselective synthesis of tertiary alcohols prepared by the addition of C-Metal nucleophiles to ketones. / Thesis (MS) — Boston College, 2008. / Submitted to: Boston College. Graduate School of Arts and Sciences. / Discipline: Chemistry.
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Accès à des hétérocycles azotés énantiopurs par cyclisation d’amino-ynones / Access to enantiopure nitrogen heterocycles by cyclization of amino-ynonesVu, Huy-Dinh 19 September 2014 (has links)
La synthèse d’hétérocycles azotés énantiopurs est un enjeu important dans la chimie du vivant et représente l’un des axes de notre laboratoire depuis quelques années. L’ensemble du travail a bénéficié pour cela du « pool chiral » constitué par les acides aminés naturels. Dans la première partie de notre travail, nous avons utilisé l’acide aspartique à partir duquel des exemples variés de β-amino-ynones ont été construits. Leur cyclisation par catalyse à l’or a donné accès à des pyridones, précurseurs de dérivés pipécoliques énantiopurs. Un travail analogue a été entrepris sur des γ-amino-ynones et a donné un résultat moins prévisible : cyclisation à cinq sommets suivie du réarrangement de Meyer-Schuster. Cette synthèse s’est montrée plus efficace en milieu acide méthane sulfonique qu’en présence d’or et représente un nouveau mode d’accès aux vinylogues d’amides de la pyrrolidine, intermédiaires-clé en synthèse totale. Enfin, l’utilisation d’un acide de Lewis, ZnCl₂, sur des γ- et δ-amino-ynones a fourni des imines cycliques, à cinq ou six sommets et portant un alcyne, que nous avons isolées sous forme libre ou complexée par l’acide de Lewis. / The synthesis of enantiopure nitrogen heterocycles is an important issue in chemistry and has been part our laboratory work for several years. The entire work took advantage of the chiral pool consisting of natural amino acids. In the first part of our work, we used aspartic acid from which various examples of β-amino-ynones were built. Their catalytic cyclization gave access to pyridones that were used as enantiopure pipecolic acid precursors. A similar work was undertaken on γ-amino-ynones and gave a less predictable result: cyclization to a five members ring followed by Meyer-Schuster rearrangement. This synthesis was more effective in a methane sulfonic acid medium than in the presence of gold and represents a new mode of access to pyrrolidine vinylogous amides that are key-intermediate in total synthesis. Finally, the use of a Lewis acid -ZnCl₂- on γ- and δ-amino-ynones provided five and six members cyclic imines, carrying an alkyne, which we isolated in the free form or complexed with the Lewis acid.
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