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Electrical conductivity and thermodynamic studies on Sodium Dimethyldithiocarbamate in non aqueous solvents Dimethylformamide (DMF), at different temperatures

Article scientifique 2022 Anglais

Résumé

Abstract This paper threw some light on the behavior of SodiumN,N-Dimethyldithiocarbamate as an electrolyte. The effect of solvents on the conductance of this salt would be discussed via measurements of Λo, aoand KA, since it can be assumed that the different solvents have a little chance to impose great variations on the solvation processes. The conductance method was chosen as a tool to illustrate the electrolyte-solvent interactions. Fuoss–Onsager equation would be tested using Sodium Dimethyldithiocarbamate in presence of dimethylformamide solvent at different temperatures. The conductance of dilute solutions of SodiumN,N-Dimethyldithiocarbamate is measured in Dimethylformamide, at different temperatures (25, 30, 35 and 40 °C). Accurate values ofΛowere obtained by applying the (Fuoss–Kraus–Shedlovsky) equation. Finally, the (Fuoss–Onsager) equation was solved to give the correct values of the constantsΛo,J, KAand a° (the closest distance of approach) for SodiumN,N-Dimethyldithiocarbamate salt in Dimethylformamide solvent.Λoand a° (solvation) increase with increasing temperatures. Thermodynamic parameters (∆G°, ∆H°, ∆S° and ∆Es) of SodiumN,N-Dimethyldithiocarbamate in Dimethylformamide were calculated from conductance measurements, the activation energy (∆Es), the enthalpy change (heat of association) (∆H°) and the entropy change (∆S°) are positive, however The free energy change (∆G°) values was negative for SodiumN,N-Dimethyl dithiocarbamate in DMF systems studied with increasing the temperature.

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Hammad, W. A., El-Hammamy, N. H., Morshidy, M. H., Alkamis, K., & Darweesh, M. A. (2022). Electrical conductivity and thermodynamic studies on Sodium Dimethyldithiocarbamate in non aqueous solvents Dimethylformamide (DMF), at different temperatures. Scientific Reports. https://doi.org/10.1038/s41598-022-18849-7

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