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Mechanistical studies on C–H activation reactions of benzaldimines using selectively deuterated ligands: synthesis and crystal structures of [μ₂-η³-(R)N-CH₂-C=C-C(H)=C(H)-C(H)=C(H)]Fe₂(CO)₆

Journal of Organometallic Chemistry. Bd. 584. H. 1. Amsterdam: Elsevier 1999 S. 33 - 43

Erscheinungsjahr: 1999

ISBN/ISSN: 1872-8561

Publikationstyp: Zeitschriftenaufsatz

Sprache: Englisch

Doi/URN: 10.1016/S0022-328X(99)00082-0

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Inhaltszusammenfassung


The reaction of Fe-2(CO)(9) with imine ligands derived from benzaldehyde leads to the formation of dinuclear iron cluster compounds of the general formula [mu 2-eta 3-N-CH2-C=C-C(H)=C(H)-C(H)]Fe-2(CO)(6) by a C-H activation/1,3-hydrogen shift reaction sequence. Six cluster compounds with alkyl and aryl substituents bound to nitrogen have been synthesised and characterised, five of them also by means of X-ray crystallography. The mechanism of the reaction has been investigated by the use of li...The reaction of Fe-2(CO)(9) with imine ligands derived from benzaldehyde leads to the formation of dinuclear iron cluster compounds of the general formula [mu 2-eta 3-N-CH2-C=C-C(H)=C(H)-C(H)]Fe-2(CO)(6) by a C-H activation/1,3-hydrogen shift reaction sequence. Six cluster compounds with alkyl and aryl substituents bound to nitrogen have been synthesised and characterised, five of them also by means of X-ray crystallography. The mechanism of the reaction has been investigated by the use of ligands being selectively deuterated in the 2-position. By several NMR experiments including deuterium spectra it can be demonstrated that the hydrogen/deuterium atom of the activated aromatic C-H bond is transferred to the former imine carbon atom producing a methylene group instead and that this reaction strictly follows an intramolecular pathway. (C) 1999 Elsevier Science S.A. All rights reserved. » weiterlesen» einklappen

  • C–H activation
  • Deuterium-NMR
  • Imines
  • Iron
  • X-ray

Autoren


Göbel, Angela (Autor)
Ohlmann, Dietmar (Autor)
Flemming, Joachim (Autor)
Fritzsche, Hartmut (Autor)

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