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Synthesis, Characterization and Property Studies on a Dinuclear Copper(II) Complex with Dipyridine Derivate and Acetylacetone
Release time:2023-10-19 Hits:Key Words:Dinuclear Cu complex; Crystal structure; Magnetic property; Thermal stability; Electrochemical property
Abstract:A dinuclear copper(II) complex of [Cu(2)(aceace)(4)(dipyph)] [aceace = acetylacetone, dipyph = 1,4-di(4-pyridyl-ethene-2-yl-)benzene] has been synthesized and characterized by elemental analysis, IR and X-ray single crystal diffraction. It crystallizes in the monoclinic system, space group P21/c, with lattice parameters a = 7.9584(16) angstrom, b = 18.594(4) angstrom, c = 15.063(4) angstrom, beta = 120.97(2)degrees and M(r) = 807.85 (C(40)H(44)Cu(2)N(2)O(8)), Z = 2. Each of the Cu2 ion adopts a square pyramid geometry and coordinates with four oxygen atoms from two aceace ligands and one nitrogen atom from dipyph bidentate ligand. Magnetic measurement shows that the Weiss constant and Curie constant for the title compound are -0.22 K and 0.1154 emu.K/mol, respectively. Thermal stability data indicate that the title complex undergoes two steps decomposition and the residue is Cu(2)O(4). In the potential range of -1.5 similar to 0.8 V, the title complex represents an irreversible electrochemical process.
Volume:32
Issue:1
Translation or Not:no