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Abstrakty
Molar conductivities of dilute solutions of cesium bromide in binary mixtures of 2-butanol and w ter were measured in the temperature range from 288.15 to 308.15 K at 5 K intervals. The limiting molar conductivity (Deltao) and the ion-pair for ma tion con stant (KA) were de ter mined by the Lee-Wheaton conductivity equation. Thermo dynamic quantities, Gibbs en ergy (DeltaGo), enthalpy (DeltaHo) and entropy (DeltaSo) for the ion-association reaction were de rived from the temperature dependence of KA. The activation energy of the ionic movement (DeltaH‡) was derived from the temperature dependence of Deltao. The obtained thermodynamic quantities, together with Walden product, were interpreted in terms of the ionic size as well as solvent basicity, structure and permittivity.
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Tom
Strony
1585--1585
Opis fizyczny
Bibliogr. 30 poz., rys.
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autor
autor
autor
- Faculty of Chemical Technology, Univer ity of Split, N. Tesle 10, HR 21000 Split, Croatia, vsokol@ktf-split.hr
Bibliografia
- 1. Wypych-Stasiewicz A., Szejgis A., Chmielewska A. and Bald A., J. Mol. Lig., 130, 34 (2007).
- 2. Szejgis A., Bald A., Gregorowicz J. and Zurada M., J. Mol. Lig., 79, 123 (1999).
- 3. Szejgis A., Bald A. and Gregorowicz J., J. Mol. Lig., 75, 237 (1998).
- 4. Szejgis A., Bald A., Gregorowicz J. and Kinart C.M., Phys. Chetn. Lig., 34, 189 (1997).
- 5. Piekarski H., Tkaczyk M., Bald A. and Szejgis A., J. Mol. Lig., 73,74, 209 (1997).
- 6. Roy M.N., Nandi D. and Hazra D.K., J. Indian Chem. Soc., 70, 121 (1993).
- 7. Haldar P. and Das B., J. Mol. Lig., 130, 29 (2007).
- 8. Tominić I. and Mekjavić L, Croat. Chem. Acta, 63, 27 (1990).
- 9. Tominić I. and Mekjavić L, Croat. Chem. Acta, 64, 9 (1991).
- 10. Tominić I. and Mekjavić I., Croat. Chem. Acta, 64, 189 (1991).
- 11. Tominić L, Toma S R., Višić M. and Sokol V., Croat. Chem. Acta, 77, 537 (2004).
- 12. Tominić L, Radačić J. and Mekjavić I., Croat. Chem. Acta, 67, 307 (1994).
- 13. Sokol V., Tominić I., Toma S R. and Višić M., Croat. Chem. Acta, 78, 43 (2005).
- 14. Tominić I., Sokol V. and Mekjavić L, Croat. Chem. Acta, 71, 705 (1998).
- 15. Sokol V, TomaS R., Visić M. and Tominić L, J. Solution Chem., 35, 1687 (2006).
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- 18. Bešter-Rogač M., Neueder R. and Barthel J., J. Solution Chem., 28, 1071 (1999).
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- 20. Barthel J., Feuerlein F., Neueder R. and Wachter R., J. Solution Chem., 9, 209 (1980).
- 21. Bald A., Gregorowicz J. and Szejgis A., J. Electroanal. Chem., 340, 153 (l 992).
- 22. Lee W.H.and Wheaton R.J.,.7 Chem. Soc. Faraday Trans.II,74,743,1456(1978); 75,1128(1979).
- 23. Pethybridge A.D. and Taba S.S., J. Chem. Soc. Faraday Trans. I, 76, 368 (1980).
- 24. Beronius P, Acta Chem. Scand. A, 28, 77 (1974).
- 25. Kraus C.A. And Bray W.C.,J.Am. Chem. Soc., 35, 1315 (1913).
- 26. Justice J.C., Electrochim. Acta, 16, 701 (1971).
- 27. Barthel J.M.G., Krienke H. and Kunz W., Physical Chemistry of Electrolyte Solutions-Modern Aspects, Steinkopptf Darmstadt, Springer, NY 1998, p. 37.
- 28. Fuoss R.M., J. Phys. Chem., 82, 2427 (1978).
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- 30. Handbook of Chemistry and Physics, Edited by Weast R.C., CRC Press, Cleveland, Ohio, 56th edn, p. 1975-1976
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ5-0022-0119