Synthesis and application of new ion-tagged ligands and organocatalysts

We report the synthesis and application of some ion-tagged catalysts in organometallic catalysis and organocatalysis. With the installation of an ionic group on the backbone of a known catalyst, two main effects are generally obtained. i) a modification of the solubility of the catalyst: if judicio...

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Main Author: Chiarucci, Michel <1983>
Other Authors: Lombardo, Marco
Format: Doctoral Thesis
Language:en
Published: Alma Mater Studiorum - Università di Bologna 2011
Subjects:
Online Access:http://amsdottorato.unibo.it/3472/
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spelling ndltd-unibo.it-oai-amsdottorato.cib.unibo.it-34722014-03-24T16:29:08Z Synthesis and application of new ion-tagged ligands and organocatalysts Chiarucci, Michel <1983> CHIM/06 Chimica organica We report the synthesis and application of some ion-tagged catalysts in organometallic catalysis and organocatalysis. With the installation of an ionic group on the backbone of a known catalyst, two main effects are generally obtained. i) a modification of the solubility of the catalyst: if judicious choice of the ion pair is made, the ion-tag can confer to the catalyst a solubility profile suitable for catalyst recycling. ii) the ionic group can play a non-innocent role in the process considered: if stabilizing interaction between the ionic group and the developing charges in the transition state are established, the reaction can speed up. We describe the use of ion-tagged diphenylprolinol as Zn ligand. The chiral ligand grafted onto an ionic liquid (IL) was recycled 10 times with no loss of reactivity and selectivity, when it was employed in the first example of enantioselective addition of ZnEt2 to aldehydes in ILs. An ammonium-tagged phosphine displayed the capability to stabilize Pd catalysts for the Suzuki reaction in ILs. The ionic phase was recycled 6 times with no detectable loss of activity and very low Pd leaching in the organic phase. This catalytic system was also employed for the functionalization of the challenging substrate 5,11-dibromotetracene. In the field of organocatalysis, we prepared two ion-tagged derivatives of the McMillan imidazolidinone. The results of the asymmetric Diels-Alder reaction between trans-cinnamaldehyde and cyclopentadiene exhibited great dependence on the position and nature of the ionic group. Finally, when O-TMS-diphenylprolinol was tagged with an imidazolium ion, exploiting a silyl ether linker, an efficient catalyst for the asymmetric addition of aldehydes to nitroolefins was achieved. The catalyst displayed enhanced reactivity and the same high level of selectivity of the untagged parent catalyst and it could be employed in a wide range of reaction conditions, included use of water as solvent. Alma Mater Studiorum - Università di Bologna Lombardo, Marco 2011-04-19 Doctoral Thesis PeerReviewed application/pdf en http://amsdottorato.unibo.it/3472/ info:eu-repo/semantics/openAccess
collection NDLTD
language en
format Doctoral Thesis
sources NDLTD
topic CHIM/06 Chimica organica
spellingShingle CHIM/06 Chimica organica
Chiarucci, Michel <1983>
Synthesis and application of new ion-tagged ligands and organocatalysts
description We report the synthesis and application of some ion-tagged catalysts in organometallic catalysis and organocatalysis. With the installation of an ionic group on the backbone of a known catalyst, two main effects are generally obtained. i) a modification of the solubility of the catalyst: if judicious choice of the ion pair is made, the ion-tag can confer to the catalyst a solubility profile suitable for catalyst recycling. ii) the ionic group can play a non-innocent role in the process considered: if stabilizing interaction between the ionic group and the developing charges in the transition state are established, the reaction can speed up. We describe the use of ion-tagged diphenylprolinol as Zn ligand. The chiral ligand grafted onto an ionic liquid (IL) was recycled 10 times with no loss of reactivity and selectivity, when it was employed in the first example of enantioselective addition of ZnEt2 to aldehydes in ILs. An ammonium-tagged phosphine displayed the capability to stabilize Pd catalysts for the Suzuki reaction in ILs. The ionic phase was recycled 6 times with no detectable loss of activity and very low Pd leaching in the organic phase. This catalytic system was also employed for the functionalization of the challenging substrate 5,11-dibromotetracene. In the field of organocatalysis, we prepared two ion-tagged derivatives of the McMillan imidazolidinone. The results of the asymmetric Diels-Alder reaction between trans-cinnamaldehyde and cyclopentadiene exhibited great dependence on the position and nature of the ionic group. Finally, when O-TMS-diphenylprolinol was tagged with an imidazolium ion, exploiting a silyl ether linker, an efficient catalyst for the asymmetric addition of aldehydes to nitroolefins was achieved. The catalyst displayed enhanced reactivity and the same high level of selectivity of the untagged parent catalyst and it could be employed in a wide range of reaction conditions, included use of water as solvent.
author2 Lombardo, Marco
author_facet Lombardo, Marco
Chiarucci, Michel <1983>
author Chiarucci, Michel <1983>
author_sort Chiarucci, Michel <1983>
title Synthesis and application of new ion-tagged ligands and organocatalysts
title_short Synthesis and application of new ion-tagged ligands and organocatalysts
title_full Synthesis and application of new ion-tagged ligands and organocatalysts
title_fullStr Synthesis and application of new ion-tagged ligands and organocatalysts
title_full_unstemmed Synthesis and application of new ion-tagged ligands and organocatalysts
title_sort synthesis and application of new ion-tagged ligands and organocatalysts
publisher Alma Mater Studiorum - Università di Bologna
publishDate 2011
url http://amsdottorato.unibo.it/3472/
work_keys_str_mv AT chiaruccimichel1983 synthesisandapplicationofnewiontaggedligandsandorganocatalysts
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