Crystal structure and magnetic properties of the 1D bimetallic thiocyanate bridged compound: {(CuL1)[Co(NCS)4]}(L1 = N-rac-5,12-Me2-[14]-4,11-dieneN4) |
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Authors: | Jerzy Mroziński Julia Kłak Rafał Kruszyński |
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Affiliation: | 1. Faculty of Chemistry, University of Wroc?aw, F. Joliot-Curie 14, 50-383 Wroc?aw, Poland;2. Department of X-ray Crystallography and Crystal Chemistry, Institute of General and Ecological Chemistry, Technical University Lodz, Zeromskiego 116, 90-924 Lodz, Poland |
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Abstract: | The synthesis, crystal structure and magnetic properties are reported for the new bimetallic compound {(CuL1)[Co(NCS)4]} where L1 = N-rac-5,12-dimethyl-1,4,8,11-tetraazacyclotetradeca-4,11-diene. The complex forms a one-dimensional zig-zag coordination polymer along the crystallographic c axis, with Co(II) and Cu(II) ions connected via thiocyanate bridges. The Co(II) centre in the [Co(NCS)4] fragment approximates a distorted tetrahedral symmetry. The Cu(II) geometry is a distorted tetragonal bipyramid with the apical position occupied by the bridging thiocyanate ligand and the basal ones by the four nitrogen atoms from the macrocyclic ring. The polymer chain nearest Cu(1)?Co(1) distances are 6.4152(9) and 6.0988(9) Å and the nearest Cu(1)?Co(1) interchain distances are 6.8609(9), 6.9628(9) and 6.0336(10) Å. The magnetization measurements for the examined compound have been carried out over the range 1.8–300 K. This data suggest ferromagnetic interactions through the thiocyanate bridge. |
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Keywords: | Crystal structure Heterobimetallic chain Thiocyanate bridge Magnetism |
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