首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Synthesis, potentiometric titration, electrochemical investigation and biological properties of trans- [RuCl_2(dinic)_4] (dinic=3,5-pyridinecarboxylic acid)
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Synthesis, potentiometric titration, electrochemical investigation and biological properties of trans- [RuCl_2(dinic)_4] (dinic=3,5-pyridinecarboxylic acid)

机译:反式[RuCl_2(dinic)_4](dinic = 3,5-吡啶羧酸)的合成,电位滴定,电化学研究和生物学性质

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This work discusses both the synthesis of trans-[RuCl_2(dinic)_4], dinic=3,5-pyridinecarboxylic acid, and its main characteristics including potentiometric titration, spectroscopic and electrochemical properties, and some biological properties. The complex was synthesized using ruthenium blue solution as the precursor in a synthetic route. The complex was characterized using electronic spectroscopy, vibrational FT-IR spectroscopy, and Raman spectroscopy, as well as ~1H and ~(13)C NMR. The results indicated that the complex exhibits a trans-geometry. Cyclic voltammetry carried out in water:acetone 1:1 solution revealed a quasi-reversible process centered on the Ru(II) atom as well as a dependence of the redox potential, E_(1/2), on pH. An analysis of the electronic spectra revealed that the MLCT (metal ligand charge transfer) band underwent a hypsochromic shift as the pH increased. Spectroelectrochemical analysis indicated that the visible region band progressively faded out upon oxidation. The equilibrium constants for the eight protons of the complex were determined by potentiometric titration. The complex neither inhibits the activity of nitrogen monoxide synthase nor acts as a scavenger for nitrogen monoxide. Nevertheless, the complex shows antinociceptive properties and acts as a scavenger for hydroxyl radicals.
机译:这项工作讨论了反式-[RuCl_2(dinic)_4],dinic = 3,5-吡啶羧酸的合成及其主要特征,包括电位滴定,光谱和电化学性质,以及一些生物学性质。使用钌蓝溶液作为前体以合成路线合成该配合物。使用电子光谱,振动FT-IR光谱和拉曼光谱以及〜1H和〜(13)C NMR表征该配合物。结果表明该配合物表现出反式几何结构。在水:丙酮1:1溶液中进行的循环伏安法显示了以Ru(II)原子为中心以及氧化还原电势E_(1/2)对pH的依赖性的准可逆过程。对电子光谱的分析表明,随着pH的增加,MLCT(金属配体电荷转移)带发生了变色移动。光谱电化学分析表明,可见区带在氧化时逐渐消失。配合物的八个质子的平衡常数通过电位滴定法确定。该复合物既不抑制一氧化氮合酶的活性,也不充当一氧化氮的清除剂。然而,该复合物显示出抗伤害感受的性质,并充当羟基自由基的清除剂。

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