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Original

Laccase Biosensors Based on Mercury Thin Film Electrode

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Pages 447-456 | Published online: 11 Jul 2009

REFERENCES

  • Wang, J. (2000). Electroanalytical Chemistry, 2nd ed., Wiley: New York.
  • Ertaş, N., Timur, S., Akyιlmaz, E., Dinçkaya. (2001). Specific determination of hydrogen peroxide with a catalyse biosensor based on mercury thin film electrode. Turk. J. Chem. 24: 95.
  • Frenzel, W. (1993). Mercury films on glassy carbon support: attributes and problems. Analytica Chimica Acta 273: 123. [CSA], [CROSSREF]
  • Economou, A., Fielden, P.R. (2003). Mercury film electrodes: developments, trends and potentialities for electroanalysis. Analyst 128: 205. [PUBMED], [INFOTRIEVE], [CSA]
  • Jordan, J., Pletschke, B.I., Leukes, W.D. (2004). Purification and partial characterization of a thermostable laccase from an unidentified basidiomycete. Enzyme and Microbial Technology 34: 635. [CSA], [CROSSREF]
  • Freire, R.S., Ferreira, M.M.C., Durán, N., Kubota, L.T. (2003). Dual amperometric biosensor device for analysis of binary mixtures of phenols by multivariate calibration using partial least squares. Analytica Chimica Acta 485: 263. [CSA], [CROSSREF]
  • Notsu, H., Tatsuma, T. (2004). Simultaneous determination of phenolic compounds by using a dual enzyme electrodes system. Journal of Electroanalytical Chemistry 566: 379. [CSA], [CROSSREF]
  • Janda, K.V., Krijt, J. (1984). Recovery of phenols from water by continous steam distillation-extraction. Journal of Chromatography A 283: 309. [CSA], [CROSSREF]
  • Alimpiev, S.S., Mlynski, V.V., Belov, M.E., Nikiforov, S.M. (1995). Selective detection of phenol impurities in water. Analytical Chemistry 67: 181. [CSA], [CROSSREF]
  • Ortega, F., Dominguez, E., Joensson-Pettersson, G., Gorton, L. (1993). Amperometric biosensor for the determination phenolic compounds using a tyrosinase graphite electrode in a flow injection analysis. J. Biotechnol. 31: 289. [PUBMED], [INFOTRIEVE], [CSA], [CROSSREF]
  • Oennerfjord, P., Emneus, J., Marko-Varga, G., Gorton, L., Ortega, F., Dominguez, E. (1995). Tyrosinase graphite-epoxy based composite electrodes for detection of phenols. Biosens. Bioelectron 10: 607. [CSA], [CROSSREF]
  • Cosnier, S., Innocent, C. (1993). A new strategy for the construction of a tyrosinase-based amperometric phenol and o-diphenol sensor, Bioelectrochem. Bioenerg. 31: 147. [CSA], [CROSSREF]
  • Marko-Varga, G., Emneus, J., Gorton, L., Ruzgas, T. (1995). Development of enzyme based amperometric sensors for the determination of phenolic compounds. Trends Anal. Chem. 14: 319. [CSA]
  • Wang, J., Fang, L., Lopez, D. (1994). Amperometric biosensor for phenols based on a tyrosinase-graphite-epoxy biocomposite. Analyst 119: 455. [PUBMED], [INFOTRIEVE], [CSA], [CROSSREF]
  • Kim, M.A., Lee, W.-Y. (2003). Amperometric phenol biosensor based on sol-gel silicate/Nafion composite film. Analytica Chimica Acta 479: 143. [CSA], [CROSSREF]
  • Bartak, P., Frnkova, P., Cap, L. (2000). Determination of phenols using simultaneous steam distillation-extraction. J. Chromatogr. A 867: 281. [PUBMED], [INFOTRIEVE], [CSA], [CROSSREF]
  • Bosch, F., Font, G., Manes, J. (1987). Ultraviolet spectrophotometric determination of phenols in natural and waste waters with iodine monobromide. Analyst 112: 1335. [PUBMED], [INFOTRIEVE], [CSA], [CROSSREF]
  • Yaropolov, A.I., Kharybin, A.N., Emnéus, J., Marko-Varga, G., Gorton, L. (1995). Flow injection analysis of phenols at a graphite electrode modified with co-immobilised laccase and tyronisine. Analytica Chimica Acta 308: 137. [CSA], [CROSSREF]
  • Freire, R.S., Duran, N., Kubota, L.T. (2002). Development of laccase based flow injection electrochemical biosensor for the determination of phenolic compounds and its application for monitoring remediation of Kraft E1 paper mill effluent. Analytica Chimica Acta 463: 229. [CSA], [CROSSREF]
  • Kulys, J., Vidziunaite, R. (2003). Amperometric biosensors based on recombinant laccases for phenol determination, Biosens. Bioelectron 18: 319. [PUBMED], [INFOTRIEVE], [CSA], [CROSSREF]
  • Xu, F. (1996). Oxidation of phenols, anilines and benzenethiols by fungal laccases: correlation between activity and redox potential as well as halide inhibitions. Biochemistry 35: 7608. [PUBMED], [INFOTRIEVE], [CSA], [CROSSREF]
  • Timur, S., Pazarlιoğlu, N., Pilloton, R., Telefoncu, A. (2003). Detection of phenolic compounds by thick film sensors based on pseudomonas putida. Talanta 61: 87. [CSA], [CROSSREF]
  • Timur, S., Della Seta, L., Pazarlιoğlu, N., Pilloton, R., Telefoncu, A. Screen printed graphite biosensors based on bacterial cells. Process Biochem. ( in press). [CSA]
  • Timur, S., Pazarlιoğlu, N., Pilloton, R., Telefoncu, A. (2004). Thick film sensors based on laccases from different sources immobilized in polyaniline matrix. Sensors & Actuators B: Chemical 97(1): 132. [INFOTRIEVE], [CSA], [CROSSREF]
  • Wolfenden, B.S., Willson, R.L. (1982). Radical cations as reference chromogens in kinetic studies of one electron transfer reactions pulse radiolysis studies of 2,2-azinobis-(3-ethylbenzthiazoline-6-sulphonate). J. Chem. Soc., Perkin Trans. 2: 805. [CSA]
  • Meier, P.C., Zund, R.E. (1993). Statistical methods in analytical chemistry, in Chemical Analysis, J.D. Winefordner, Ed., J. Wiley & Sons Inc.: New York, vol. 123, p. 87.

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