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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Thermodynamics of axial substitution and kinetics of reactions with amino acids for the paddlewheel complex tetrakis(acetato)chloridodiruthenium(II,III)
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Thermodynamics of axial substitution and kinetics of reactions with amino acids for the paddlewheel complex tetrakis(acetato)chloridodiruthenium(II,III)

机译:桨复合四(乙酰基)氯二钌(II,III)的轴向取代热力学和与氨基酸的反应动力学

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摘要

The known paddlewheel, tetrakis(acetato)chloridodiruthenium(II,III), offers a versatile synthetic route to a novel class of antitumor diruthenium(II,III) metallo drugs, where the equatorial ligands are nonsteroidal anti-inflammatory carboxylates. This complex was studied here as a soluble starting prototype model for antitumor analogues to elucidate the reactivity of the [Ru _2(CH _3COO) _4] ~+ framework. Thermodynamic studies on equilibration reactions for axial substitution of water by chloride and kinetic studies on reactions of the diaqua complexes with the amino acids glycine, cysteine, histidine, and tryptophan were performed. The standard thermodynamic reaction parameters δH°, δS°, and δV° were determined and showed that both of the sequential axial substitution reactions are enthalpy driven. Kinetic rate laws and rate constants were determined for the axial substitution reactions of coordinated water by the amino acids that gave the corresponding aqua(amino acid)-Ru 2 substituted species. The results revealed that the [Ru _2(CH _3COO) _4] ~+ paddlewheel framework remained stable during the axial ligand substitution reactions and was also mostly preserved in the presence of the amino acids.
机译:已知的桨轮四(乙酰基)氯二钌(II,III)为新型抗肿瘤二钌(II,III)金属药物提供了一种通用的合成途径,其中赤道配体是非甾体类抗炎性羧酸盐。该复合物在这里作为抗肿瘤类似物的可溶性起始原型模型进行研究,以阐明[Ru _2(CH _3COO)_4]〜+骨架的反应性。进行了用氯轴向置换水的平衡反应的热力学研究,以及diadia配合物与氨基酸甘氨酸,半胱氨酸,组氨酸和色氨酸的反应的动力学研究。确定了标准的热力学反应参数δH°,δS°和δV°,表明两个顺序的轴向取代反应都是焓驱动的。确定了配位水的轴向取代反应的动力学速率定律和速率常数,该氨基酸由氨基酸生成相应的水(氨基酸)-Ru 2取代物种。结果表明,[Ru _2(CH _3COO)_4]〜+桨轮构架在轴向配体取代反应过程中保持稳定,并且在存在氨基酸的情况下也大部分保留。

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