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Investigations of selected properties of pharmacologically active compounds by chromatographic and potentiometric methods on the chrysin example Cover

Investigations of selected properties of pharmacologically active compounds by chromatographic and potentiometric methods on the chrysin example

Open Access
|Apr 2008

References

  1. Benavente-Garcia, O., Castillo, J., Marin, F. R., Ortuno A. & Del Rio J. A. (1997). Uses and Properties of Citrus Flavonoids.,45(12), 4505 - 4515.
  2. Di Carlo, G., Mascolo, N., Izzo A. A. & Capasso F. (1999) Flavonoids: old and new aspects of a class of natural therapeutic drugs.65(4), 337 - 353.
  3. Harborne J. B. & Mabry T. J. (1982).. Chapman and Hall, London.
  4. Cody, V., Middleton E. & Harborne J. B. (1986).. Alan R. Liss, New York.
  5. Cody, V., Middleton, E., Harborne J. B. & Beretz A. (1988).. Alan R. Liss, New York,.
  6. Pusz J. & Nitka B. (1997). Synthesis and Physicochemical Properties of the Complexes of Co(III), Ni(III) and Cu(III) with Chrysin.. J. 56, 373 - 381.
  7. Pusz J. & Nitka B. (1996). Synthesis and physicochemical properties of the compounds of iron(III), cadmium(II) and lead(II) ions with chrysin.14, 55 - 73, (in Polish).
  8. Barcella, A. L., Grunwald, E., Marshall H. P. & Purlee E. L. (1955). The potentiometric measurement of acid dissociation constants and pH in the system methanol-water. pKvalues for carboxylic acids and anilinium ions.20, 747-762.
  9. Sheldovsky T. & Kay R. L. (1956). The ionization constant of acetic acid in water-methanol mixtures at 250 from conductance measurements.60(2), 151 - 155.
  10. de Ligny, C. L. (1960). The dissociation constants of some aliphatic amines in water and methanol-water mixtures at 25°C.60, 731 - 746.
  11. de Ligny, C. L., Loriaux H. & Ruiter A. (1961). The application of Hammett's acidity function Ho to solutions in methanol-water mixtures.80, 725 - 739.
  12. Chatten, L. G. & Harris, L. E. (1962) Relationship between pK(HO) of organic compounds and E/2 values in several nonaqueous solvents.34, 1495 - 1501.
  13. Lide, D. R. (1997 - 1998).(78th ed.) (pp. 3 - 78). CRC Press, New York.
  14. Fried, B. & Sherma, J. (1999) Thin-Layer Chromatography (Chromatographic Science, V. 81) (4th ed.). Marcel Dekker, USA.
  15. Espinoza, S., Bosch E. & Roses M. (2002). Retention of ionizable compounds in high-performance liquid chromatography. IX. Modelling retention in reversed-phase liquid chromatography as a function of pH and solvent composition with acetonitryle-water mobile phases.A. 947, 47 - 58.
  16. Fletcher, R. (1971).. AERE-R6799-Harwell - England.
  17. Rossotti, H. (1983).. PWN, Warsaw, Poland, (in Polish).
  18. Maleki, N., Haghighi B. & Safavi A. (1999). Evaluation of Formation Constants, Molar Absorptivities of Metal Complexes, and Protonation Constants of Acids by Nonlinear Curve Fitting Using Microsoft Excel Solver and User-Defined Function,62, 229 - 236.
DOI: https://doi.org/10.2478/v10026-008-0010-x | Journal eISSN: 3072-0389 (formerly 1899-4741) | Journal ISSN: 1509-8117
Language: English
Page range: 41 - 44
Published on: Apr 3, 2008
Published by: West Pomeranian University of Technology, Szczecin
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open

© 2008 Janusz Pusz, Wojciech Zapała, Bogdan Papciak, published by West Pomeranian University of Technology, Szczecin
This work is licensed under the Creative Commons License.