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  4. Asymmetric Phase-Transfer-Catalyzed Intramolecular N-Alkylation of Indoles and Pyrroles: A Combined Experimental and Theoretical Investigation
 
research article

Asymmetric Phase-Transfer-Catalyzed Intramolecular N-Alkylation of Indoles and Pyrroles: A Combined Experimental and Theoretical Investigation

Bandini, Marco
•
Bottoni, Andrea
•
Eichholzer, Astrid
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2010
Chemistry - A European Journal

Asymmetric phase-transfer catalysis (PTC) has risen to prominence over the last decade as a straightforward synthetic methodology for the preparation of pharmacologically active compounds in enantiomerically pure form. However, the complex interplay of weak nonbonded interactions (between catalyst and substrate) that could account for the stereoselection in these processes is still unclear, with tentative pictorial mechanistic representations usually proposed. Here we present a full account dealing with the enantioselective phase-transfer-catalyzed intramolecular aza-Michael reaction (IMAMR) of indolyl esters, as a valuable synthetic tool to obtain added-value compounds, such as dihydro- pyrazinoindolinones. A combined computational and experimental investigation has been carried out to elucidate the key mechanistic aspects of this process.

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Type
research article
DOI
10.1002/chem.201000560
Web of Science ID

WOS:000284061400026

Author(s)
Bandini, Marco
Bottoni, Andrea
Eichholzer, Astrid
Miscione, Gian Pietro
Stenta, Marco
Date Issued

2010

Publisher

Wiley-Blackwell

Published in
Chemistry - A European Journal
Volume

16

Issue

41

Start page

12462

End page

12473

Subjects

asymmetric catalysis

•

computational chemistry

•

indoles

•

Michael addition

•

phase-transfer catalysis

•

Friedel-Crafts Reaction

•

Aza-Michael Reaction

•

Enantioselective Total-Synthesis

•

Quaternary Ammonium-Salts

•

Chiral Bronsted Acids

•

Allylic Alkylation

•

Thermochemical Kinetics

•

Density Functionals

•

Carbonyl-Compounds

•

Natural-Products

Editorial or Peer reviewed

NON-REVIEWED

Written at

EPFL

EPFL units
IBI  
Available on Infoscience
September 24, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/54113
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