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Structures and Magnetism of Two Novel Heptanuclear Lanthanide-Centered Trigonal Prismatic Clusters: [LnCu<sub>6</sub>(μ<sub>3</sub>-OH)<sub>3</sub>(HL)<sub>2</sub>(L)<sub>4</sub>](ClO<sub>4</sub>)<sub>2</sub>·25H<sub>2</sub>O (Ln = La, Tb; H<sub>2</sub>L = Iminodiacetic Acid)
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References
2000
Year
Crystal StructureMagnetic PropertiesEngineeringChemistryCompound 2Inorganic CompoundMagnetismChemical EngineeringSingle-crystal X-ray DiffractionMaterials ScienceInorganic ChemistryCluster ScienceCrystallographyCrystal Structure DesignInorganic SynthesisMolecule-based MagnetCoordination ComplexCondensed Matter PhysicsCu2+ IonsCluster ChemistryMolecular Complex
The new heteronuclear iminodiacetic acid (H2L) complexes [LnCu6(mu 3-OH)3(HL)2(L)4](ClO4)(2).25H2O with Ln = La (1) and Tb (2) have been prepared in aqueous solution and characterized by single-crystal X-ray diffraction to be isomorphous (crystallographic data for 1 and 2: hexagonal, P63/m; a = b = 12.6425(14) A, c = 24.541(5) A, Z = 2 (1); a = b = 12.5802(9) A, c = 24.285(4) A, Z = 2 (2)). Ln3+ was found to be located in the center of the trigonal prismatic cage formed by six Cu2+ ions, with a tricapped trigonal prismatic coordination environment of nine O atoms. The magnetic properties of complexes 1 and 2 have been studied. The results indicate the presence of ferromagnetic couplings between Tb3+ and Cu2+ in compound 2.
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