he changes in free energy, enthalpy, and entropy for the complex formation reactions between uranyl(VI) ion and diethylenetriamine (dien) in dimethyl sulfoxide have been determined by potentiometric and calorimetric measurements at 25-degrees-C in a medium of ionic strength 0.1 mol dm-3. The amine forms a very stable 1 : 1 complex which results stabilized only by the highly favourable enthalpy change. Entropy change is negative and opposes the reaction. The comparison of the thermodynamic data concerning complexation of uranyl(VI) by charged and uncharged ligands reveals that in this case (uncharged ligand) the enthalpy contribution is mainly related to the formation of the metal-ligand bonds while the entropy term might be associated with ...
The thermodynamics of complex formation of lanthanide(III) ions with the neutral nitrogen-donor liga...
The changes in free energy, enthalpy and entropy for the formation of uranyl(VI)-glycolate complexes...
The changes in free energy, enthalpy and entropy for the formation of uranyl(VI)-glycolate complexes...
Quantitative information about the existence and thermodynamic stability of uranyl(V1) ion complexes...
The thermodynamics of the complexation between uranium(VI) and acetate in dimethyl sulfoxide (DMSO)...
The thermodynamics of the complexation between uranium(VI) and acetate in dimethyl sulfoxide (DMSO)...
The thermodynamics of the complexation between uranium(VI) and acetate in dimethyl sulfoxide (DMSO) ...
The thermodynamics of the complexation between uranium(VI) and acetate in dimethyl sulfoxide (DMSO) ...
The thermodynamic functions Delta G circle minus, Delta H circle minus and Delta S circle minus for ...
The thermodynamics of the complexation between uranium(VI) and acetate in dimethyl sulfoxide (DMSO) ...
The stability constants (log \u3b2), enthalpies of complexation (\u3b2H), and entropies of complexat...
The protonation reactions of oxalate (ox) and the complex formation of uranium(VI) with oxalate in 1...
The protonation reactions of oxalate (ox) and the complex formation of uranium(VI) with oxalate in 1...
The protonation reactions of oxalate (ox) and the complex formation of uranium(VI) with oxalate in 1...
The changes in free energy, enthalpy and entropy for the formation of uranyl(VI)-glycolate complexes...
The thermodynamics of complex formation of lanthanide(III) ions with the neutral nitrogen-donor liga...
The changes in free energy, enthalpy and entropy for the formation of uranyl(VI)-glycolate complexes...
The changes in free energy, enthalpy and entropy for the formation of uranyl(VI)-glycolate complexes...
Quantitative information about the existence and thermodynamic stability of uranyl(V1) ion complexes...
The thermodynamics of the complexation between uranium(VI) and acetate in dimethyl sulfoxide (DMSO)...
The thermodynamics of the complexation between uranium(VI) and acetate in dimethyl sulfoxide (DMSO)...
The thermodynamics of the complexation between uranium(VI) and acetate in dimethyl sulfoxide (DMSO) ...
The thermodynamics of the complexation between uranium(VI) and acetate in dimethyl sulfoxide (DMSO) ...
The thermodynamic functions Delta G circle minus, Delta H circle minus and Delta S circle minus for ...
The thermodynamics of the complexation between uranium(VI) and acetate in dimethyl sulfoxide (DMSO) ...
The stability constants (log \u3b2), enthalpies of complexation (\u3b2H), and entropies of complexat...
The protonation reactions of oxalate (ox) and the complex formation of uranium(VI) with oxalate in 1...
The protonation reactions of oxalate (ox) and the complex formation of uranium(VI) with oxalate in 1...
The protonation reactions of oxalate (ox) and the complex formation of uranium(VI) with oxalate in 1...
The changes in free energy, enthalpy and entropy for the formation of uranyl(VI)-glycolate complexes...
The thermodynamics of complex formation of lanthanide(III) ions with the neutral nitrogen-donor liga...
The changes in free energy, enthalpy and entropy for the formation of uranyl(VI)-glycolate complexes...
The changes in free energy, enthalpy and entropy for the formation of uranyl(VI)-glycolate complexes...