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A pyrazole-based orthogonal ferromagnetically coupled [2 × 2] homoleptic square Cu4 grid: Magnetostructural correlations
Authors:Somnath Roy  Tarak Nath Mandal  Anil Kumar Barik  Samik Gupta  Ray J. Butcher  Mohamed Salah El Fallah  Javier Tercero  Susanta Kumar Kar
Affiliation:1. Department of Chemistry, University College of Science, 92, A.P.C. Road, Kolkata 700 009, India;2. Department of Chemistry, St. Paul’s C.M. College, 33/1, Raja Rammohan Roy Sarani, Kolkata 700 009, India;3. Department of Chemistry, Howard University, 2400 Sixth Street, N.W., Washington, DC 200 59, USA;4. Departament de Química Inorgànica, Facultat de Química, Universitat de Barcelona, Martí i Franquès 1-11, 08028 Barcelona, Spain
Abstract:The synthesis and structure of a pyrazole-based orthogonal ferromagnetically coupled tetracopper(II) 2 × 2 homoleptic grid complex [Cu4(PzOAPyz)4(ClO4)2](ClO4)2 · 6H2O (1), formed by the reaction between the ditopic ligand PzOAPyz and Cu(ClO4)2 · 6H2O, are described. The ligand contains terminal pyrazole and pyrazine residues bound to a central flexible diazine subunit (N–N) as well as one potentially bridging alkoxo group. The two adjacent metal centers are linked by an alkoxo oxygen forming essentially a square Cu4(μ-O4) cluster. In the Cu4(μ-O4) core, out of the four copper centers, two copper centers are penta-coordinated and the remaining two are hexa-coordinated. In each case of hexa-coordination, the sixth position is occupied by one of the oxygen atoms of a coordinated perchlorate ion. Complex 1 has been characterized structurally and magnetically. Although the large Cu–O–Cu bridge angles (137–138°) and short Cu–Cu distances (3.964–3.970 Å) are suitable for the transmission of the expected antiferromagnetic coupling, the square-based Cu4(μ-O4) cluster exhibits an intramolecular ferromagnetic exchange (J = 7.47 cm−1) between the metal centers with an S = 2 magnetic ground state associated with the quasi orthogonal arrangement of the magnetic orbitals (dx2-y2dx2-y2). The exchange pathway parameters have been evaluated from density functional calculations.
Keywords:Tetranuclear copper 2   ×     2 grid   Schiff base   X-ray structure   Magnetic property
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