Issue 13, 2005

Investigations into the metal species of the homogeneous iron(iii) catalyzed Michael addition reactions

Abstract

An investigation into the species formed in the first step of the solvent free homogeneous Michael reaction of α,β-unsaturated ketones with 2-oxocyclopentanecarboxylate (1) is presented. This reaction is catalyzed by FeCl3·6H2O (2) and Fe(ClO4)3·9H2O (3). EXAFS, XANES, Raman and UV-Vis studies were carried out to explain the experimentally found higher catalytic activity of Fe(ClO4)3·9H2O (3) compared to FeCl3·6H2O (2). A very intense pre-edge peak is found for a 1.6 mol% solution of FeCl3·6H2O (2) in 1, suggesting a tetrachloroferrate(III) compound to be present in this solution. This is proved by UV-Vis and Raman spectroscopy. The counterion of this anionic complex is an octahedral [FeIII(1–H)2(H2O)2]+ complex with two deprotonated 2-oxocyclopentanecarboxylate (1) as the chelating ligand, (1–H), as suggested by the examination of the XANES region, the obtained coordination numbers from the EXAFS analysis and by UV-Vis and Raman spectroscopies. In summary, the anion–cation species [FeIIICl4][FeIII(1–H)2(H2O)2]+ is formed with FeCl3·6H2O (2), whereas in the case of Fe(ClO4)3·9H2O (3) XAFS, Raman and UV-Vis investigations suggest the presence of a complex of the form [FeIII(1–H)2(H2O)2]+[ClO4]. The obtained results are discussed to explain the reduced catalytic activity of FeCl3·6H2O (2) in comparison to Fe(ClO4)3·9H2O (3).

Graphical abstract: Investigations into the metal species of the homogeneous iron(iii) catalyzed Michael addition reactions

Article information

Article type
Paper
Submitted
25 Jan 2005
Accepted
16 May 2005
First published
01 Jun 2005

Phys. Chem. Chem. Phys., 2005,7, 2664-2670

Investigations into the metal species of the homogeneous iron(III) catalyzed Michael addition reactions

M. Bauer, T. Kauf, J. Christoffers and H. Bertagnolli, Phys. Chem. Chem. Phys., 2005, 7, 2664 DOI: 10.1039/B501204J

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