Stereoselective Hydrogenation of Aromatic Alkynes Using Water, Triethylsilane, or Methanol, Mediated and Catalyzed by Ni(0) Complexes

The use of complexes of the type [(P-P)Ni(η2-C,C-alkyne)] (P-P = 1,2-bis(di-isopropyl-phosphinoethane or 1,2-bis(diterbutylphosphino-ethane) in the presence of water, triethylsilane/water, or methanol as hydrogen sources yields the selective production of E- or Z- aromatic alkenes from the correspon...

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Veröffentlicht in:Inorganic chemistry 2009-01, Vol.48 (1), p.386-393
Hauptverfasser: Barrios-Francisco, Rigoberto, García, Juventino J
Format: Artikel
Sprache:eng
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Zusammenfassung:The use of complexes of the type [(P-P)Ni(η2-C,C-alkyne)] (P-P = 1,2-bis(di-isopropyl-phosphinoethane or 1,2-bis(diterbutylphosphino-ethane) in the presence of water, triethylsilane/water, or methanol as hydrogen sources yields the selective production of E- or Z- aromatic alkenes from the corresponding alkynes. For instance, in the case of diphenylacetylene (dpa) and water, a metal-mediated process was found to yield trans-stilbene stoichiometrically, whereas in the case of triethylsilane/water and methanol, a catalytic system (1% mol) was found. The catalytic systems gave >95% conversion to cis- or trans-stilbene, respectively. The use of a variety of substituents on the aromatic ring was also assessed. Deuterium-labeling studies using D2O allowed the confirmation of water as the hydrogen source for the alkyne reduction.
ISSN:0020-1669
1520-510X
DOI:10.1021/ic801823x