首页> 外文期刊>Inorganica Chimica Acta >Determination of formation constants for complexes of very high stability: log beta(4) for the [Pd(CN)(4)](2-) ion
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Determination of formation constants for complexes of very high stability: log beta(4) for the [Pd(CN)(4)](2-) ion

机译:确定非常高的稳定性的配合物的形成常数:[Pd(CN)(4)](2-)离子的log beta(4)

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The formation constant, log beta(4) = 62.3 for [Pd(CN)(4)](2-) is reported at 25 degrees C in 0.1 M NaClO4. This value of log beta(4) was determined using a competition reaction, monitored using UV-Vis spectroscopy and H-1 NMR. The competition reaction used was with the tetraamine ligand 2,3,2-tet(1,4,8,11-tetraazaundecane), for which logK(1) = 47.8 at 25 degrees C in 0.1 M NaClO4 was determined by competition with thiocyanate, as described by earlier workers (Q.Y. Yan, G. Anderegg, Inorg. Chim. Acta 105 (1985) 121.). Also reported is a value of log beta(4) for the [Pd(SCN)(4)](2-) ion of 27.2 in 0.1 M NaClO4, determined by competition with 2,2,2-tet. Measurement of logK(1) for cyclam with Pd(II) was attempted using a competition reaction with cyanide, combined with the very high value of log beta(4) for [Pd(CN)(4)](2-) measured here. It appeared that the equilibrium being followed was actually [Pd(cyclam)](2+) + 2CN(-) reversible arrow [Pd(cyclam)(CN)(2)], for which a constant of logK = 5.2 was obtained. H-1 NMR and IR studies suggested that the complex [Pd(cyclam)(CN)(2)] was prone to oxidation to Pd(IV), followed by disproportionation to [Pd(cyclam)](2+) and, presumably, (CN)(2). The very high value of log beta(4) for [Pd(CN)(4)](2-) found here appears to be the highest formation constant known for any metal ion. (c) 2005 Elsevier B.V. All rights reserved.
机译:据报道在25摄氏度,0.1 M NaClO4中,[Pd(CN)(4)](2-)的形成常数log beta(4)= 62.3。使用竞争反应确定对数beta(4)的值,并使用UV-Vis光谱和H-1 NMR进行监测。所使用的竞争反应是与四胺配体2,3,2-tet(1,4,8,11-四氮杂十一烷)进行竞争,通过与硫氰酸盐竞争确定在25°C下于0.1 M NaClO4中的logK(1)= 47.8 ,如早期工作人员所述(QY Yan,G.Anderegg,Inorg。Chim。Acta 105(1985)121.)。还报告了在0.1 M NaClO4中27.2的[Pd(SCN)(4)](2-)离子的log beta(4)值,通过与2,2,2-tet竞争确定。尝试使用与氰化物发生的竞争反应来测定具有Pd(II)的cyclam的logK(1),并结合此处测得的[Pd(CN)(4)](2-)的log beta(4)很高的值。看来遵循的平衡实际上是[Pd(cyclam)](2+)+ 2CN(-)可逆箭头[Pd(cyclam)(CN)(2)],其常数logK = 5.2。 H-1 NMR和IR研究表明,复合物[Pd(cyclam)(CN)(2)]易于氧化为Pd(IV),随后歧化为[Pd(cyclam)](2+),据推测,(CN)(2)。此处发现的[Pd(CN)(4)](2-)的log beta(4)的对数值非常高,这似乎是任何金属离子已知的最高形成常数。 (c)2005 Elsevier B.V.保留所有权利。

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