729
Views
5
CrossRef citations to date
0
Altmetric
Research Article

Voltammetric oxidation of carbenicillin and its electro analytical applications at gold electrode

, , & ORCID Icon | (Reviewing Editor)
Article: 1235459 | Received 03 May 2016, Accepted 08 Sep 2016, Published online: 03 Oct 2016

References

  • Abbar, J. C., & Nandibewoor, S. T. (2012). Development of electrochemical method for the determination of chlorzoxazone drug and its analytical applications to pharmaceutical dosage form and human biological fluids. Industrial & Engineering Chemistry Research, 51, 111–118.10.1021/ie2021812
  • Bagoji, A. M., Gokavi, N. M., Pattar, V. P., & Nandibewoor, S. T. (2015). Fabrication characterization and application of NiSO4 modified carbon paste electrode for the detection of 2-thiouracil in biological fluids. Analytical & Bioanalytical Electrochemistry, 7, 684–700.
  • Bard, A. J., & Faulkner, L. R. (2004). Electrochemical methods fundamentals and applications (p. 236). New York, NY: Wiley.
  • Barus, C., Gros, P., Comtat, M., Daunes-Marion, S., & Tarroux, R. (2007). Electrochemical behaviour of N-acetyl-l-cysteine on gold electrode—A tentative reaction mechanism. Electrochimica Acta, 52, 7978–7985.10.1016/j.electacta.2007.06.065
  • Chen, J., Jiang, Z., Ackerman, J. D., Yazdani, M., Hou, S., Nugen, S. R., & Rotello, V. M. (2015). Electrochemical nanoparticle-enzyme sensors for screening bacterial contamination in drinking water. The Analyst, 140, 4991–4996.10.1039/C5AN00637F
  • Christian, G. D., & Purdy, W. C. (1962). Residual current in orthophosphate medium. Journal of Electroanalytical Chemistry, 3, 363–367.
  • Erk, N. (2004). Voltammetric behaviour and determination of moxifloxacin in pharmaceutical products and human plasma. Analytical and Bioanalytical Chemistry, 378, 1351–1356.10.1007/s00216-003-2427-7
  • Ferapontova, E. E. (2004). Electrochemistry of guanine and 8-oxoguanine at gold electrodes. Electrochimica Acta, 49, 1751–1759.10.1016/j.electacta.2003.12.006
  • Gosser, D. K. (1993). Cyclic voltammetry: Simulation and analysis of reaction mechanisms (p. 43). New York, NY: VCH.
  • Laviron, E. (1979). General expression of the linear potential sweep voltammogram in the case of diffusionless electrochemical systems. Journal of Electroanalytical Chemistry and Interfacial Electrochemistry, 101, 19–28.10.1016/S0022-0728(79)80075-3
  • Martins, I., Carreira, F. C., Canaes, L. S., de Souza Campos Junior, F. A., da Silva Cruz, L. M., & Rath, S. (2011). Determination of parabens in shampoo using high performance liquid chromatography with amperometric detection on a boron doped diamond electrode. Talanta, 85, 1–7.10.1016/j.talanta.2011.04.047
  • Naidong, W., Dzerk, A. M., & Lee, J. W. (1994). Development and validation of an LC method for the quantitation of carbenicillin in human serum. Journal of Pharmaceutical and Biomedical Analysis, 12, 845–850.10.1016/S0731-7085(94)80026-X
  • Reynolds, J. E. F. (Ed.). (1996). Martindale: The extra pharmacopoeia (31st ed., pp. 181, 183–184). London: Royal Pharmaceutical Society.
  • Rezaei, B., & Damiri, S. (2008). Voltammetric behavior of multi-walled carbon nanotubes modified electrode-hexacyanoferrate(II) electrocatalyst system as a sensor for determination of captopril. Sensors and Actuators B: Chemical, 134, 324–331.10.1016/j.snb.2008.05.004
  • Roy, P. K., Ganguly, A., Yang, W. H., Wu, C. T., Hwang, J. S., Tai, Y., ... Chattopadhyay, S. (2015). Edge promoted ultrasensitive electrochemical detection of organic bio-molecules on epitaxial graphene nanowalls. Biosensors and Bioelectronics, 70, 137–144.
  • Squella, J. A., & Núñez-Vergara, L. J. (1986). Electrochemical study of the interaction between glutathione and carbenicillin. Electrochimica Acta, 31, 767–769.10.1016/0013-4686(86)85005-8
  • Tak, M., Gupta, V., & Tomar, M. (2014). Flower-like ZnO nanostructure based electrochemical DNA biosensor for bacterial meningitis detection. Biosensors and Bioelectronics, 59, 200–207.10.1016/j.bios.2014.03.036
  • Vedel, G., Picard, B., Paul, G., Philippon, A., Gilly, L., Krishnamoorthy, R., & Névot, P. (1989). The analysis of five carbenicillin-hydrolysing enzymes by electrophoretic methods. Research in Microbiology, 140, 579–590.10.1016/0923-2508(89)90090-9
  • Womey, P. A. (1981). High-performance liquid chromatographic analysis of carbenicillin and its degradation products. Journal of Pharmaceutical Sciences, 70, 824–826.
  • Xia, H. Y., & Hu, X. Y. (2005). Determination of isoniazid using a gold electrode by differential pulse voltammetry. Analytical Letters, 38, 1405–1414.
  • Yunhua, W., Xiaobo, J., & Shengshui, H. (2004). Studies on electrochemical oxidation of azithromycin and its interaction with bovine serum albumin. Bioelectrochemistry, 64, 91–97.
  • Zima, J., Švancara, I., Barek, J., & Vytřas, K. (2009). Recent advances in electroanalysis of organic compounds at carbon paste electrodes. Critical Reviews in Analytical Chemistry, 39, 204–227.10.1080/10408340903011853