首页> 外文期刊>Journal of Solution Chemistry >Complex Formation Equilibria Between Zinc(II), Nitrilo-tris(Methyl Phosphonic Acid) and Some Bio-relevant Ligands. The Kinetics and Mechanism for Zinc(II) Ion Promoted Hydrolysis of Glycine Methyl Ester
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Complex Formation Equilibria Between Zinc(II), Nitrilo-tris(Methyl Phosphonic Acid) and Some Bio-relevant Ligands. The Kinetics and Mechanism for Zinc(II) Ion Promoted Hydrolysis of Glycine Methyl Ester

机译:锌(II),亚硝基三(甲基膦酸)与某些生物相关配体之间的络合物形成平衡。锌(II)离子促进甘氨酸甲基酯水解的动力学和机理

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Binary and ternary complexes of zinc(II) involving nitrilo-tris(methyl phosphonic acid (H6A) and amino acids, peptides (HL), or DNA constituents have been investigated. The stoichiometry and stability constants for the complexes formed are reported. The results show that ternary complexes are formed in a stepwise manner whereby nitrilo-tris(methylphosphonic acid) binds to zinc(II), which is then followed by coordination of an amino acid, peptide or DNA. Zinc(II) was found to form ZnA and ZnAH n complex species where n=3, 2 or 1. The stabilities of the ternary complexes are compared with the stabilities of their corresponding binary complexes. The concentration distributions of the various complex species have been evaluated. The kinetics of the base hydrolysis of glycine methyl ester in the presence of Zn(II)-NTP complexes was studied in aqueous solution using a pH-stat technique. The pK a for ionization of the coordinated water molecule is 9.14 as determined from the kinetic results, while direct potentiometric titration of the complex [Zn(NTP)(H2O)] gave 9.98 (±0.02). The rate constant for the intramolecular attack of coordinated hydroxide on the ester is k=(2.65×10−4±0.003) dm3⋅mol−1⋅s−1.
机译:研究了含次氮基三甲基膦酸(H 6 A)与氨基酸,肽(HL)或DNA成分的锌(II)的二元和三元络合物,其化学计量和稳定性常数结果表明,三元复合物是逐步形成的,其中次氮基三(甲基膦酸)与锌(II)结合,然后氨基酸,肽或DNA配位。发现(II)形成ZnA和ZnAH n 配合物,其中n = 3、2或1。将三元配合物的稳定性与其对应的二元配合物的稳定性进行比较。用pH-stat技术研究了在Zn(II)-NTP配合物存在下,甘氨酸甲酯在碱溶液中的碱性水解动力学。 >配位水分子的电离为9.14,如det从动力学结果看,直接用电位滴定法测定络合物[Zn(NTP)(H 2 O)]的结果为9.98(±0.02)。配位氢氧根对酯的分子内侵蚀的速率常数为k =(2.65×10 -4 ±0.003)dm 3 ⋅mol -1 ⋅s -1

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