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首页> 外文期刊>Journal of Solution Chemistry >Speciation of the Ternary Complexes of Vanadium(III)–Dipicolinic Acid with the Amino Acids Glycine, Proline, α-Alanine and β-Alanine Studied in 3.0 mol⋅dm−3 KCl at 25 °C
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Speciation of the Ternary Complexes of Vanadium(III)–Dipicolinic Acid with the Amino Acids Glycine, Proline, α-Alanine and β-Alanine Studied in 3.0 mol⋅dm−3 KCl at 25 °C

机译:钒(III)-二吡啶甲酸与氨基酸甘氨酸,脯氨酸,α-丙氨酸和β-丙氨酸的三元络合物在25℃下于3.0 mol·dm-3 KCl中的形态研究

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In this paper we present speciation results for the ternary vanadium(III)–dipicolinic acid (H2dipic) systems with the amino acids glycine (Hgly), proline (Hpro), α-alanine (Hα-ala), and β-alanine (Hβ-ala), obtained by means of electromotive forces measurements emf(H) using 3.0 mol⋅dm−3 KCl as the ionic medium and a temperature of 25 °C. The experimental data were analyzed by means of the computational least-squares program LETAGROP, taking into account hydrolysis of the vanadium(III) cation, the respective stability constants of the binary complexes, and the acid base reactions of the ligands, which were kept fixed during the analysis. In the vanadium(III)–dipicolinic acid–glycine system, formation of the ternary [V(Hdipic)(Hgly)]2+, [V(dipic)(Hgly)]+, [V(dipic)(gly)], [V(dipic)(gly)(OH)]− and [V(dipic)(gly)(OH)2]2− was observed; in the case of the vanadium(III)–dipicolinic acid–proline system the ternary complexes [V(Hdipic) (Hpro)]2+, [V(dipic)(Hpro)]+, [V(dipic)(pro)] and [V(dipic)(pro)(OH)]− were observed; in the vanadium(III)–picolinic acid–α-alanine were observed [V(Hdipic)(Hα-ala)]2+, [V(dipic) (Hα-ala)]+, [V(dipic)(αala)], [V(dipic)(α-ala)(OH)]− and [V(dipic)(α-ala)(OH)2]2−; and in the vanadium(III)–dipicolinic acid–β-ala system the complexes [V(dipic) (Hβ-ala)]+, [V(dipic)(β-ala)], [V(dipic)(β-ala)(OH)]− and [V(dipic)(β-ala)(OH)2]2− were observed. Their respective stability constants were determined, and we evaluated values of Δlog 10 K″ in order to understand the relative stability of the ternary complexes compared to the corresponding binary ones. The species distribution diagrams are briefly discussed as a function of pH.
机译:在本文中,我们介绍了具有氨基酸甘氨酸(Hgly),脯氨酸(Hpro),α-丙氨酸(Hα-ala)和三价钒(III)-二吡啶甲酸(H2 dipic)体系的形成结果β-丙氨酸(Hβ-ala),是通过使用3.0 mol·dm-3氯化钾作为离子介质,温度为25°C的电动势测量emf(H)获得的。通过计算最小二乘程序LETAGROP来分析实验数据,其中考虑了钒(III)阳离子的水解,二元配合物的各自稳定性常数以及配体的酸碱反应,这些反应保持固定在分析过程中。在钒(III)-二吡啶甲酸-甘氨酸系统中,三元[V(Hdipic)(Hgly)] 2 + ,[V(dipic)(Hgly)] + ,[V (dipic)(gly)],[V(dipic)(gly)(OH)]-和[V(dipic)(gly)(OH)2 ] 2--sup观测到的;在钒(III)-二吡啶甲酸-脯氨酸系统中,三元络合物[V(Hdipic)(Hpro)] 2 + ,[V(dipic)(Hpro)] + ,[观察到V(dipic)(pro)]和[V(dipic)(pro)(OH)]-;在钒(III)-吡啶甲酸-α-丙氨酸中观察到[V(Hdipic)(Hα-ala)] 2 + ,[V(dipic)(Hα-ala)] + , [V(dipic)(αala)],[V(dipic)(α-ala)(OH)]-和[V(dipic)(α-ala)(OH)2 ] 2 − ;在钒(III)-二吡啶甲酸-β-ala系统中,[V(dipic)(Hβ-ala)] + ,[V(dipic)(β-ala)],[V(dipic) )(β-ala)(OH)]-和[V(dipic)(β-ala)(OH)2 ] 2-。确定它们各自的稳定性常数,并评估Δlog10 K”的值,以了解三元配合物与相应二元配合物的相对稳定性。简要讨论了物种分布图随pH的变化。

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