Analytical chemistry council

Metody i Ob'ekty Khimicheskogo Analiza

(METHODS AND OBJECTS OF CHEMICAL ANALYSIS)

Kiev University

An international journal devoted to all aspects of Analytical chemistry

 

ISSN 2413-6166 (Online), ISSN 1991-0290 (Print)

 Ukr | En | Rus

Volume 9, No. 3, 2014

DETERMINATION OF ONDANSETRON AT A CARBONE PASTE ELECTRODE BY DERIVATIVE VOLTAMMETRY

V.V. Varchenko, D.V. Strilets, K.N. Belikov

Methods Objects Chem. Anal., Volume 9, No 3, 2014 p. 139-144

References

1. Salem I.I., López J.M.R., Galán A.C. Ondansetron Hydrochloride. Anal. Profiles Drug Subs. Excip. 2001, 27, 301–338.

2. Dépôt M., Leroux S., Caillé G. High-resolution liquid chromatographic method using ultraviolet detection for determination of ondansetron in human plasma. J. Chromatogr. B. 1997, 693 (2), 399–406.

3. Liu K., Dai X., Zhong D., Chen X. Quantitative determination of ondansetron in human plasma by enantioselective liquid chromatography-tandem mass spectrometry. J. Chromatogr. B. 2008, 864 (1-2), 129–136.

4. Ninama G., Patel R., Patel M., Shah G. Solid phase extraction liquid chromatography mass spectrometry method with electrospray ionization for the determination of Ondansetron in human plasma: Development and validation consideration. Arab. J. Chem. 2013.

5. Zamora L.L., Calatayud J.M. Extractive Spectrophotometric Determination of Ondansetron by Ion-Pair Formation with Bromocresol Green. Anal. Lett. 1996, 29 (5), 785–792.

6. Siluveru M., Stewart J.T. Enantioselective determination of S-(+)- and R-(−)-ondansetron in human serum using derivatized cyclodextrin-modified capillary electrophoresis and solid-phase extraction. J. Chromatogr. B. 1997, 691 (1), 217–222.

7. Svancara I., Vytřas K., Kalcher K., Walcarius A., Wang J. Carbon Paste Electrodes in Facts, Numbers, and Notes: A Review on the Occasion of the 50-Years Jubilee of Carbon Paste in Electrochemistry and Electroanalysis. Electroanalysis. 2009, 21 (1), 7–28.

8. Nigović B., Sadiković M., Sertić M. Multi-walled carbon nanotubes/Nafion composite film modified electrode as a sensor for simultaneous determination of ondansetron and morphine. Talanta. 2014, 122, 187–194.

9. Murthy A., Manthiram A. Application of Derivative Voltammetry in the Analysis of Methanol Oxidation Reaction. J. of Phys. Chem. C. 2012, 116 (5), 3827–3832.

10. Rice M.E., Galus Z., Adams R.N. Graphite paste electrodes. J. Electroanal. Chem. Interfacial Electrochem. 1983, 143 (1-2), 89–102.

11. Nadjo L., Savéant J.M. Linear sweep voltammetry: Kinetic control by charge transfer and/or secondary chemical reactions. J. Electroanal. Chem. Interfacial Electrochem. 1973, 48 (1), 113–145.

12. Raczyńska E.D. Quantum-chemical studies of the consequences of one-electron oxidation and one-electron reduction for imidazole in the gas phase and water. Comp. Theor. Chem. 2012, 993, 73–79.

13. Wang H.L., O’Malley R.M., Fernandez J.E. Electrochemical and Chemical Polymerization of Imidazole and Some of Its Derivatives. Macromolecules. 1994, 27 (4), 893–901.

14. Vogelgesang J., Hädrich J. Limits of detection, identification and determination: a statistical approach for practitioners. Accredit. Qual. Assur. 1998, 3 (6), 242–255.

5. Kościelniak P. Nonlinear calibration by the standard addition method. Chemom. Intell. Lab. Syst. 1999, 47 (2), 275–287. 16. Yang S.H., Yang K.H., Lee M.G. Gender differences in ondansetron pharmacokinetics in rats. Biopharm. Drug Dispos. 2008, 29 (7), 406–413.

METHODS AND OBJECTS OF CHEMICAL ANALYSIS (MOCA), 2014, 9(3), pp. 139-144


Publisher: Analytical Chemistry Scientific Council of Ukraine

(Analytical chemistry department at Taras Shevchenko National University, 64 Vladimirskaya STR., Kiev, 01601 UKRAINE)
analysis@univ.kiev.ua, www.achem.univ.kiev.ua, +380-44-2393345

Papers published in Methods and Objects of Chemical Analysis are considered as publications suitable for PhD thesis

The journal website: www.moca.net.ua