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Synthesis, crystal structure, magnetic properties and theoretical studies on a one-dimensional polynuclear copper(<scp>ii</scp>) complex [Cu<sub>2</sub>(μ<sub>1,3</sub>-SCN)<sub>2</sub>(μ′<sub>1,3</sub>-SCN)<sub>2</sub>(MPyO)<sub>2</sub>]<sub>n</sub>
43
Citations
52
References
2005
Year
Materials ScienceInorganic ChemistryMagnetic PropertiesMagnetismEngineeringCrystal StructureInorganic CompoundNatural SciencesCoordination ComplexCoordination ModesMolecular ComplexChemistryCrystallographyOne-dimensional Polynuclear CopperMagnetic MaterialsInorganic SynthesisEsr Spectra
A new one-dimensional polynuclear copper(II) complex [Cu(2)(mu(1,3)-SCN)(2)(mu'(1,3)-SCN)(2)(MPyO)(2)](n)(where MPyO = 4-methylpyridine N-oxide) has been synthesized and its crystal structure determined by X-ray crystallography. In the complex there exist two kinds of bridging coordination modes, namely, mu(1,3)-SCN(-) equatorial-equatorial (EE) bridging ligand and micro'(1,3)-SCN(-) equatorial-axial (EA) bridging ligand. Two micro(1,3)-SCN(-) EE bridging ligands coordinate two copper(II) ions in a binuclear unit, and the S atoms from the micro'(1,3)-SCN(-) EA bridging ligands as axial coordinated atoms link the binuclear units into one-dimensional chains. The ESR spectra have been investigated, and variable temperature (4-300 K) magnetic measurements were analyzed using a binuclear Cu(ii) magnetic interaction formula and indicate the existence of strong antiferromagnetic coupling with 2J=- 216.00 cm(-1) between bridged copper(II) ions. Density functional calculations have been carried out on this binuclear unit, yielding a similar singlet-triplet splitting. The mechanism of strong antiferromangetic interaction is revealed according to the calculations.
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