JOURNAL ARTICLE

Complexation Kinetics of N‐Alkyl‐Substituted Diamino Diamides with Nickel (II) in Aqueous Solution

Min‐Shiun ChaoShih‐Liang Huang

Year: 2001 Journal:   Journal of the Chinese Chemical Society Vol: 48 (4)Pages: 683-691   Publisher: Wiley

Abstract

Abstract Equilibrium constants are deter mined for the protonation and metal complexation of the nickel(II) complexes with 4‐methyl‐4,7‐diazadecanediamide (4‐Me‐L‐2,2,2), 4,7‐dimethyl‐4,7‐diazadecanediamide (4,7‐N,N′‐Me 2 ‐L‐2,2,2), 4‐ethyl‐4,7‐diazadecanediamide (4‐Et‐L‐2,2,2), and 4‐methyl‐4,8‐ diazaundecane diamide (4‐Me‐L‐2,3,2), in 0.10 M KCl at 25.0°C. The formation kinetics of these nickel (II) complexes have been studied under the same conditions with use of the stopped‐flow technique. The possible path ways for the complexation reaction of nickel (II) with these ligands are discussed. The first metal‐nitrogen bond formation is proposed as the rate‐determining step for the reactions of nickel (II) with the unprotonated ligands; proton loss is the rate‐limiting step in the reactions of nickel (II) with the monoprotonated ligands. Similarly, in dissociation reactions of these nickel (II) complexes, the rate‐determining step for the water dissociation pathway is the break age of the second nickel‐nitrogen bond; the rate‐determining step for the proton‐assisted path way is the protonation of the released amino group. The important factors determining the reactivity of these complexes are considered. The kinetic results of the formation and dissociation reactions of these complexes are consistent with dissociative mechanism.

Keywords:
Chemistry Nickel Protonation Dissociation (chemistry) Kinetics Metal Aqueous solution Reaction rate constant Alkyl Rate-determining step Medicinal chemistry Reactivity (psychology) Inorganic chemistry Physical chemistry Organic chemistry Ion Catalysis

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Topics

Lanthanide and Transition Metal Complexes
Physical Sciences →  Materials Science →  Materials Chemistry
Radioactive element chemistry and processing
Physical Sciences →  Chemistry →  Inorganic Chemistry
Radiopharmaceutical Chemistry and Applications
Health Sciences →  Medicine →  Radiology, Nuclear Medicine and Imaging

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