Issue 31, 2011

Control of molecular architecture by steric factors: mononuclear vs polynuclear manganese(iii) compounds with tetradentate N2O2 donor Schiff bases

Abstract

Three manganese(III) compounds, [MnIII(vanoph)(DMF)(H2O)]ClO4 (1), [MnIII(vanoph)(N3)(H2O)]·2H2O (2) and [MnIII(saloph)(μ1,3-N3)]n (3), where H2vanoph = N,N′-(1,2-phenylene)-bis(3-methoxysalicylideneimine), H2saloph = N,N′-(1,2-phenylene)-bis(salicylideneamine) are tetradentate N2O2 ligands and DMF = N,N-dimethylformamide, have been prepared and characterised by elemental analysis, IR and UV–Vis spectroscopy and single-crystal X-ray diffraction studies. Compounds 1 and 2 are monomeric but compound 3 consists of a chain system with the repeating unit [MnIII(saloph)(N3)] bridged by μ-1,3 azide. Compound 1 crystallises in monoclinic space groupP21/n with cell dimensions of a = 11.1430(2), b = 16.3594(3), c = 15.4001(3) Å, β = 108.417(1), Z = 4 whereas compounds 2 and 3 crystallise in orthorhombic space groupsPbca and Pna21, respectively, with cell dimensions of a = 16.069(3), b = 15.616(3), c = 18.099(4) Å, Z = 8 (for 2) and a = 18.760(9), b = 13.356(5), c = 6.616(3) Å, Z = 4 (for 3). In all the compounds, Mn(III) has a six-coordinated pseudo-octahedral geometry in which O(2), O(3), N(1) and N(2) atoms of the deprotonated di-Schiff base constitute the equatorial plane. In both compounds 1 and 2, water molecules are present in the fifth coordination sites in the apical positions. The sixth coordination sites are occupied by one O atom of a solvent DMF in compound 1 and an N atom of azide in compound 2. The coordinated water initiates hydrogen-bonded networks in both compounds 1 and 2 to form well-isolated supramolecular dimers. At room temperature the χMT values for the compounds 1 and 2 remain almost constant until 30 K. Below this temperature, the χMT values drastically drop to 0.72 cm3 mol−1 K for 1 and 0.52 cm3 mol−1 K for 2. The best fits were obtained with J = −0.92 cm−1, |D| = 2.05 cm−1, g = 2.0 and R = 8.1 × 10−4 for 1 and J = −1.16 cm−1, |D| = 2.05 cm−1, g = 2.0 and R = 1.2 × 10−3 for 2. However, in compound 3, two axial positions are occupied by the azide ions. The Mn⋯Mn repeating distance is 6.616 Å along the chain. Magnetic characterisation shows that the μ1,3-bridging azide ion mainly transmits an antiferromagnetic interaction (J = −6.36 cm−1) between Mn(III) ions. The presence of two methoxy groups increases the steric crowding in the H2vanoph moiety and thereby inhibits the formation of a polynuclear compound with this ligand.

Graphical abstract: Control of molecular architecture by steric factors: mononuclear vs polynuclear manganese(iii) compounds with tetradentate N2O2 donor Schiff bases

Supplementary files

Article information

Article type
Paper
Submitted
08 Dec 2010
Accepted
09 May 2011
First published
30 Jun 2011

Dalton Trans., 2011,40, 7916-7926

Control of molecular architecture by steric factors: mononuclear vs polynuclear manganese(III) compounds with tetradentate N2O2 donor Schiff bases

P. Bhowmik, H. P. Nayek, M. Corbella, N. Aliaga-Alcalde and S. Chattopadhyay, Dalton Trans., 2011, 40, 7916 DOI: 10.1039/C0DT01723J

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