Issue 4, 2009

Methoxo-bridged diiron(iii) complex of m-xylylenebis(acetylacetonate) showing remarkable thermal stability for encapsulated dichloromethane

Abstract

The synthesis, structural characterization, spectroscopic, magnetic, electrochemical and thermal properties of a methoxo-bridged dinuclear iron(III) inclusion compound [Fe2(m-xba)2(μ-OCH3)2]·CH2Cl2 (1) derived from m-xylylenebis(acetylacetone) H2(m-xba) are reported. In 1, the symmetry related two distorted octahedral iron(III) centres are separated by 3.164(8) Å and the distance between the centroids of the aromatic ring planes is 11.836 Å. In the solid state molecular association takes place through C–H⋯O and C–H⋯Cl types of hydrogen bondings leading to the remarkable thermal stability of 1 whose desolvation takes place between 140 and 220 °C. The enthalpy change due to the loss of dichloromethane, as determined by differential scanning calorimetric measurement, is −103 kJ mol−1. Variable-temperature (4–300 K) magnetic susceptibility measurements indicated antiferromagnetic exchange interaction (H = −2JS1S2) in 1 with J = −13.5 cm−1. The 1H NMR spectrum of 1 in CD2Cl2 is consistent with its symmetric structure and exhibits maximum paramagnetic shift for the methoxy protons (ca. 200 ppm). The cyclic voltammogram of 1 in dichloromethane in the potential range 0 to −1.2 V exhibits a quasi-reversible redox couple due to FeIIIFeIII/FeIIIFeII with E1/2 = −0.85 V. Further reduction to the FeIIFeII state at −1.5 V leads to decomposition of the complex species.

Graphical abstract: Methoxo-bridged diiron(iii) complex of m-xylylenebis(acetylacetonate) showing remarkable thermal stability for encapsulated dichloromethane

Supplementary files

Article information

Article type
Paper
Submitted
21 Oct 2008
Accepted
28 Nov 2008
First published
27 Jan 2009

New J. Chem., 2009,33, 847-852

Methoxo-bridged diiron(III) complex of m-xylylenebis(acetylacetonate) showing remarkable thermal stability for encapsulated dichloromethane

S. Dutta, P. Biswas, S. K. Dutta and K. Nag, New J. Chem., 2009, 33, 847 DOI: 10.1039/B818578F

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