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Synthesis and magnetism of binuclear cobalt(II) complexes with the tetraacetylethene dianion as a bridging ligand
Authors:Shi  Jingmin  Xu  Jiqing  Wang  Renzhang  Yang  Guoyu  Sun  Haoran  Wang  Tiegang  Cheng  Peng  Liao  Daizheng
Affiliation:(1) Department of Chemistry, Shandong Normal University, Jinan, 250014, P.R. China;(2) Department of Chemistry, Jilin University, Changchun, 130023, P.R. China;(3) Department of Chemistry, Nankai University, Tianjin, 300071, P.R. China
Abstract:Three novel binuclear CoIIcomplexes, [Co2(TAE)-(phen)4](ClO4)2·3H2O(1),[Co2(TAE)(Nphen)4](ClO4)2 ·4H2O(2) and [CO2(TAE)(bipy)4](ClO4)2·H2O(3) (TAE=tetraacetylethene dianion, phen=1,10–phenanthroline, Nphen=5–nitro·1,10–phenanthroline, bipy =2,2prime-bipyridy1), have been synthesized and characterized by elemental analysis, i.r., molar conductance and electronic reflection spectra. The complexes are proposed to contain tetraacetylethene dianion bridged structures and two CoII ions. The variable-temperature magnetic susceptibility of complex (1) was measured in the 4–300 K range. The magnetic coupling parameter is consistent with antiferromagnetic exchange between the two CoII centres and the data fit a binuclear magnetic exchange model based on the Hamiltonian operator (Hcirc = –2 JScirc1Scirc2, S1=S2=3/2), giving the antiferromagnetic coupling parameter of 2J=–1.55cm–1.
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