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EN
A new decavanadate compound consisting of one decavanadate polyanion [V10O28]6–, two protonated piperidinium cations [C5H12N]+, two doubly protonated N,N,N',N'- tetramethylethylenediammonium cat ions [C6N2H18]2+ and four lattice water molecules, namely, [(C5H12N)2][(C6N2H18)2][V10O28]×4H2O, has been synthesized and characterized by spectroscopic (IR, UV-vis and ESR) studies and single-crystal X-ray diffraction. It crystallizes in the monoclinic system, space group P21/n and Z = 2, with a = 11.1267(18) capital A, ring, b = 16.854(3) capital A, ring, c = 12.973(2) capital A, ring and beta = 95.426(2)°. The cat ions, an ions and lattice water molecules are assembled by hydrogen bonds, forming a three-dimensional supramolecular architecture. The DNA-binding property of the compound was preliminarily investigated by using fluorescence spectrum, and the results indicating that the interaction mode between the compound and herring sperm DNA (HS-DNA) might be groove binding with the quenching constant of 1.20×104. To the best of our knowledge, this is the first report about the DNA-binding study of decavanadate compounds.
EN
A new binuclear cobalt(III) complex bridged both by mi-peroxo and mi-hydroxyl groups, and end-capped with 4,4 -dimethyl-2,2 -bipyridine (Me2bpy), namely, [Co2( -O2)( -OH)(Me2bpy)4](ClO4)3, has been synthesized and characterized by elemental analysis, IR, UV and single-Crystal X-ray diffraction. It crystallizes in the monoclinic system, space group P21/c and Z = 4, with a = 24.148(5) capital A, b = 10.628(2) capital A, c = 16.306(3) ?, and b = 90.74(3)°. The single crystal X-ray analysis reveals that the complex is composed of three per chlorate anions and a binuclear cobalt(III) cation, in which the cobalt(III) atoms are bridged both by hydroxyl and peroxo groups. Each cobalt(III) atom exhibits an octahedral geometry. A three-dimensional supramolecular arrangement in the crystal is generated by non-classical hydrogen bonds. The DNA-Binding properties of the complex were explored by using absorption and emission spectra and electrochemical methods. The result suggests that the binuclear cobalt(III) complex interacts with herring sperm DNA (HS-DNA) in the mode of intercalation with the intrinsic binding constant of 1.1×103 M-1.
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