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  4. New Synthetic Applications of Water Acetate Pd/TPPTS Catalyst Generated in situ. Evidence for true Pd(0) Valent Species Intermediate
 
research article

New Synthetic Applications of Water Acetate Pd/TPPTS Catalyst Generated in situ. Evidence for true Pd(0) Valent Species Intermediate

Amatore, Christian
•
Blart, Erol
•
Genêt, Jean-Pierre
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1995
The Journal of Organic Chemistry

Studies on the sp-sp intermolecular coupling reactions with the palladium water-soluble catalyst prepared in situ from palladium(II) acetate and sulfonated triphenylphosphine P(C6H4-m-SO3Na)(3) (TPPTS) in a homogeneous acetonitrile-water system, without Cu(I) promotor, afford diynes with moderate yields (45-65%). Under the same conditions, the sp(2)-sp coupling of 2-iodophenols or 2-iodoanilines and terminal alkynes followed by intramolecular cyclization gives indolic and furanic products in good yields (60-99%). Under these aqueous conditions, an efficient and short synthesis of eutypine illustrated the synthetic potentiality of the coupling. Furthermore, through a series of kinetic and P-31 NMR experiments, we have demonstrated that a mixture of Pd(OAc)(2) and TPPTS affords spontaneously a palladium(0) complex, through formation of bivalent complex Pd(OAc)(2)-(TPPTS)(2). A detailed mechanism of the reaction has been investigated thoroughly and the pertinent rate constants measured. The resulting palladium(0) complex reacts with phenyl iodide via an oxidative addition. This complex is considerably less reactive than the corresponding complex generated from PPh(3), probably due to steric effects.

  • Details
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Type
research article
DOI
10.1021/jo00126a037
Author(s)
Amatore, Christian
Blart, Erol
Genêt, Jean-Pierre
Jutand, Anny
Lemaire-Audoire, Sandrine
Savignac, Monique
Date Issued

1995

Published in
The Journal of Organic Chemistry
Volume

60

Issue

21

Start page

6829

End page

6839

Subjects

alpha-aminophosphonic acids

•

phosphine complexes

•

aqueous-media

•

homogeneous catalysis

•

coupling reactions

•

schiff-bases

•

palladium

•

hydrogenation

•

rhodium

•

synthon

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LGSA  
Available on Infoscience
November 9, 2005
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/219442
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