Asymmetric aminocatalysis: a modern strategy for molecules, challenges and life

The studies conducted during my Phd thesis were focused on two different directions: 1. In one case we tried to face some long standing problems of the asymmetric aminocatalysis as the activation of encumbered carbonyl compounds and the control of the diastereoisomeric ratio in the diastero- and...

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Main Author: Pesciaioli, Fabio <1982>
Other Authors: Bartoli, Giuseppe
Format: Doctoral Thesis
Language:en
Published: Alma Mater Studiorum - Università di Bologna 2011
Subjects:
Online Access:http://amsdottorato.unibo.it/3786/
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spelling ndltd-unibo.it-oai-amsdottorato.cib.unibo.it-37862014-03-24T16:29:20Z Asymmetric aminocatalysis: a modern strategy for molecules, challenges and life Pesciaioli, Fabio <1982> CHIM/06 Chimica organica The studies conducted during my Phd thesis were focused on two different directions: 1. In one case we tried to face some long standing problems of the asymmetric aminocatalysis as the activation of encumbered carbonyl compounds and the control of the diastereoisomeric ratio in the diastero- and enantioselective construction of all carbon substituted quaternary stereocenters adjacent a tertiary one. In this section (Challenges) was described the asymmetric aziridination of ,-unsaturated ketones, the activation of ,-unsaturated -branched aldehydes and the Michael addition of oxindoles to enals and enones. For the activation via iminium ion formation of sterically demanding substrates, as ,-unsaturated ketones and ,-unsaturated -branched aldehydes, we exploited a chiral primary amine in order to overcome the problem of the iminium ion formation between the catalyst and encumbered carbonylic componds. For the control of diastereoisomeric ratio in the diastero- and enantioselective construction of all carbon substituted quaternary stereocenters adjacent a tertiary one we envisaged that a suitable strategy was the Michael addition to 3 substituted oxindoles to enals activated via LUMO-lowering catalysis. In this synthetic protocol we designed a new bifunctional catalyst with an amine moiety for activate the aldehyde and a tioureidic fragment for direct the approach of the oxindole. This part of the thesis (Challenges) could be considered pure basic research, where the solution of the synthetic problem was the goal itself of the research. 2. In the other hand (Molecules) we applied our knowledge about the carbonylic compounds activation and about cascade reaction to the synthesis of three new classes of spirooxindole in enantiopure form. The construction of libraries of these bioactive compounds represented a scientific bridge between medicinal chemistry or biology and the asymmetric catalysis. Alma Mater Studiorum - Università di Bologna Bartoli, Giuseppe 2011-04-19 Doctoral Thesis PeerReviewed application/pdf en http://amsdottorato.unibo.it/3786/ info:eu-repo/semantics/openAccess
collection NDLTD
language en
format Doctoral Thesis
sources NDLTD
topic CHIM/06 Chimica organica
spellingShingle CHIM/06 Chimica organica
Pesciaioli, Fabio <1982>
Asymmetric aminocatalysis: a modern strategy for molecules, challenges and life
description The studies conducted during my Phd thesis were focused on two different directions: 1. In one case we tried to face some long standing problems of the asymmetric aminocatalysis as the activation of encumbered carbonyl compounds and the control of the diastereoisomeric ratio in the diastero- and enantioselective construction of all carbon substituted quaternary stereocenters adjacent a tertiary one. In this section (Challenges) was described the asymmetric aziridination of ,-unsaturated ketones, the activation of ,-unsaturated -branched aldehydes and the Michael addition of oxindoles to enals and enones. For the activation via iminium ion formation of sterically demanding substrates, as ,-unsaturated ketones and ,-unsaturated -branched aldehydes, we exploited a chiral primary amine in order to overcome the problem of the iminium ion formation between the catalyst and encumbered carbonylic componds. For the control of diastereoisomeric ratio in the diastero- and enantioselective construction of all carbon substituted quaternary stereocenters adjacent a tertiary one we envisaged that a suitable strategy was the Michael addition to 3 substituted oxindoles to enals activated via LUMO-lowering catalysis. In this synthetic protocol we designed a new bifunctional catalyst with an amine moiety for activate the aldehyde and a tioureidic fragment for direct the approach of the oxindole. This part of the thesis (Challenges) could be considered pure basic research, where the solution of the synthetic problem was the goal itself of the research. 2. In the other hand (Molecules) we applied our knowledge about the carbonylic compounds activation and about cascade reaction to the synthesis of three new classes of spirooxindole in enantiopure form. The construction of libraries of these bioactive compounds represented a scientific bridge between medicinal chemistry or biology and the asymmetric catalysis.
author2 Bartoli, Giuseppe
author_facet Bartoli, Giuseppe
Pesciaioli, Fabio <1982>
author Pesciaioli, Fabio <1982>
author_sort Pesciaioli, Fabio <1982>
title Asymmetric aminocatalysis: a modern strategy for molecules, challenges and life
title_short Asymmetric aminocatalysis: a modern strategy for molecules, challenges and life
title_full Asymmetric aminocatalysis: a modern strategy for molecules, challenges and life
title_fullStr Asymmetric aminocatalysis: a modern strategy for molecules, challenges and life
title_full_unstemmed Asymmetric aminocatalysis: a modern strategy for molecules, challenges and life
title_sort asymmetric aminocatalysis: a modern strategy for molecules, challenges and life
publisher Alma Mater Studiorum - Università di Bologna
publishDate 2011
url http://amsdottorato.unibo.it/3786/
work_keys_str_mv AT pesciaiolifabio1982 asymmetricaminocatalysisamodernstrategyformoleculeschallengesandlife
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