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The work presented in the Book entitled "Stability constants of metal complexes" can be summarized as below. The practical proton-ligand and metal-ligand stability constants were determined by Calvin-Bjerrum titration technique using nitric acid and constant ionic strength was maintained with sodium nitrate. It was pointed out by Irving and Rossotti, that it is neither necessary to convert pH meter reading "B" to stoichiometric hydrogen ion concentration nor to know the stoichiometric concentration of the neutral salt added to maintain constant ionic strength. The method is valid both in water…mehr

Produktbeschreibung
The work presented in the Book entitled "Stability constants of metal complexes" can be summarized as below. The practical proton-ligand and metal-ligand stability constants were determined by Calvin-Bjerrum titration technique using nitric acid and constant ionic strength was maintained with sodium nitrate. It was pointed out by Irving and Rossotti, that it is neither necessary to convert pH meter reading "B" to stoichiometric hydrogen ion concentration nor to know the stoichiometric concentration of the neutral salt added to maintain constant ionic strength. The method is valid both in water and water-dioxane medium. The nitrate ion has very slight complexing tendency and the competition between nitrate ion and the ligand under study is of minor importance. This may be studied by comparing the stabilities of complexes of series of metal ions with a given ligand. For a given ligand, irrespective of its nature, the order of stability constants of complexes of bivalent ions of thefirst transition series are usually in the natural orders (some times called the Irving-Williams order). Cu(II)Ni(II)Co(II)
Autorenporträt
Lecturer D.K.V. Arts and Science College, Jamnagar, Gujarat (India)