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Triruthenium dodecacarbonyl/triphenylphosphine catalyzed dehydrogenation of primary and secondary alcohols

Authors :
Huub Kooijman
G.B.W.L. Ligthart
L.A. Hulshof
J Jan Meuldijk
Allison M. Mills
R. H. Meijer
Anthony L. Spek
Jef A. J. M. Vekemans
Macromolecular and Organic Chemistry
Macro-Organic Chemistry
Kristal- en structuurchemie
R¿ntgenparticipatieprogramma
Universiteit Utrecht
Dep Scheikunde
Source :
Tetrahedron, 60(5), 1065-1072. Elsevier
Publication Year :
2004

Abstract

Dehydrogenation of alcs. into aldehydes and ketones by Ru3(CO)12/PPh3 based homogeneous catalysis has been investigated as an alternative for the classical Oppenauer oxidn. Several catalytic systems have been screened in the Oppenauer-like oxidn. of alcs. A systematic study of various combinations of Ru3(CO)12, mono- and bidentate ligands and hydride acceptors was performed to enable dehydrogenation of primary alcs. to stop at the aldehyde stage. Among many H-acceptors screened, diphenylacetylene (tolane) proved the most suitable judged from its smooth redn. Electron rich and deficient analogs of tolane have been synthesized and, based on competition expts. between these H-acceptors, a tentative catalytic cycle for the Ru3(CO)12/PPh3-catalyzed dehydrogenations has been proposed. The crystal and mol. structures of a ruthenium-triphenylphosphine-tolane adduct [i.e., dicarbonyl[(2,3,4,5-h)-2,3,4,5-tetraphenyl-2,4-cyclopentadien-1-one](triphenylphosphine)ruthenium] were reported. [on SciFinder (R)]

Details

Language :
English
ISSN :
00404020
Database :
OpenAIRE
Journal :
Tetrahedron, 60(5), 1065-1072. Elsevier
Accession number :
edsair.doi.dedup.....5bebaf74c0400dc01e443e287c1d1c8c