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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Synthesis and characterization of a new series of unsymmetrical macrocyclic binuclear vanadyl(IV) complexes: Electrochemical, antimicrobial, DNA binding and cleavage studies
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Synthesis and characterization of a new series of unsymmetrical macrocyclic binuclear vanadyl(IV) complexes: Electrochemical, antimicrobial, DNA binding and cleavage studies

机译:一系列新的不对称大环双核钒(IV)配合物的合成和表征:电化学,抗菌,DNA结合和裂解研究

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A new series of unsymmetrical macrocyclic binuclear bis-phenoxo bridged oxidovanadium(IV) complexes have been synthesized and characterized by elemental and spectral techniques. A cyclic voltammetric investigation of these binuclear (VO)-O-IV complexes evidenced that two successive quasi-reversible one electron transfer reduction waves (E-pc(1) = -0.54 to -0.67 V, E-pc(2) = -0.80 to -0.85 V) are obtained. In the positive potential region (+0.50 to +1.00 V) two quasi-reversible oxidation couples are observed for all the complexes. The first one electron oxidation is observed around (E-pc(1)) +0.63 to +0.78 V and the second around (E-pc(2)) +0.82 to +0.97 V. The ESR spectra of all the binuclear (VO)-O-IV complexes showed a single broad-band resonance at ca. g = 1.97-2.11 with the half field signal at 1500G (M = 2), which suggest magnetic interactions between two (VO)-O-IV ions through the phenolate bridge. DNA binding experiments show that the aromatic diimine containing macrocyclic (VO)-O-IV complexes display better DNA interactions than the aliphatic diimine containing (VO)-O-IV analogues. These complexes significantly promote the oxidative cleavage of supercoiled plasmid DNA under physiological conditions in the presence of H2O2. All the complexes show noticeable growth inhibition of some plant pathogenic fungal species and human pathogenic bacterial species.
机译:合成了一系列新的不对称大环双核双-苯氧基桥联氧化钒(IV)配合物,并通过元素和光谱技术对其进行了表征。对这些双核(VO)-O-IV络合物的循环伏安研究表明,两个连续的准可逆的一个电子转移还原波(E-pc(1)= -0.54至-0.67 V,E-pc(2)=-获得0.80至-0.85 V)。在正电位区域(+0.50至+1.00 V)中,所有配合物均观察到两个准可逆氧化对。在(E-pc(1))+0.63至+0.78 V附近观察到第一个电子氧化,在(E-pc(2))+0.82至+0.97 V附近观察到第二个电子氧化。所有双核(VO )-O-IV络合物在大约1处显示出一个宽带共振。 g = 1.97-2.11,半场信号为1500G(M = 2),这表明两个(VO)-O-IV离子之间通过酚盐桥发生了磁相互作用。 DNA结合实验表明,与含脂肪族二亚胺的(VO)-O-IV类似物相比,含芳香族二亚胺的大环(VO)-O-IV复合物表现出更好的DNA相互作用。这些复合物在存在H 2 O 2的生理条件下显着促进超螺旋质粒DNA的氧化裂解。所有的配合物对某些植物病原真菌和人类病原细菌都有明显的生长抑制作用。

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