Journal of the Chemical Society A Inorganic Physical Theoretical · 1967 · 13 citations · 0 references
Materials ScienceStandard PotentialsChemical EngineeringSilver–silver Bromide ElectrodeEngineeringEthylene Glycol–water MixturesElectrode-electrolyte InterfaceSurface ScienceFundamental ElectrochemistryAg–agbr ElectrodePhysical ChemistryAnalytical ChemistryChemistryElectrochemical InterfaceElectrochemistryElectrochemical Surface Science
Standard potentials of the Ag–AgBr electrode in ethylene glycol–water mixtures (containing 10, 30, 50, 70, and 90% by weight of glycol) have been determined at 5, 15, 25, 30, 35, and 45°, using a cell of the type: Pt, H2(gas, 1 atmosphere)|HBr(m), glycol(X), H2O(Y)| AgBr–AgThe values of E°m as a function of the temperature in each solvent can be represented in the form of an equation as shown below: (i) 10% Glycol; E°m= 0·0676 – 4·85 × 10–4(t– 25)– 2·92 × 10–6(t– 25)2(ii) 30% Glycol; E°m= 0·0585 – 5·27 × 10–4(t– 25)– 2·50 × 10–6(t– 25)2(iii) 50% Glycol; E°m= 0·0480 – 6·59 × 10–4(t– 25)– 1·64 × 10–6(t– 25)2(iv) 70% Glycol; E°m= 0·0328 – 8·65 × 10–4(t– 25)– 1·21 × 10–6(t– 25)2(v) 90% Glycol; E°m=–0·0115 – 1·13 × 10–3(t– 25)– 9·28 × 10–7(t– 25)2The activity coefficients of hydrobromic acid (0·005 – 0·1m) in these media at 5, 25, and 45° have been evaluated. The relative partial molal heat content as well as the medium effect of hydrobromic acid in each solvent has been calculated at 25°. The dependance of the standard electrode potentials on the dielectric constants of the media in the light of the Born equation as well as the volume fraction of water (ϕW) in the light of French–Feakins relationship has been examined.