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PREPARATION OF FILM ELECTRODE USING DOPANT FOR CONSTRUCTION OF BIOSENSORS SENSITIVE TO HYDROGEN PEROXIDE

Yıl 2017, Cilt: 30 Sayı: 4, 104 - 112, 11.12.2017

Öz

In this study, a new film
electrode for determination of hydrogen peroxide was developed. Polypyrrole-poly
(sodium-4-styrenesulphonate) film have been prepared on the platinum electrode
by the electropolymerization of pyrrole was carried out in the presence of
poly(sodium-4-styrenesulphonate). Optimum conditions of
polypyrrole-poly(sodium-4-styrenesulphonate) film was founded. Oxidation of the
hydrogen peroxide was examined at a different potential.
Therefore, four different potentials (0.4, 0.5, 0.6, and 0.7 V) were
determined. Also, concentration of pyrrole and poly(sodium-4-styrenesulphonate)
were examined. The effect of the number of cycles in their sensitivity to
hydrogen peroxide is investigated.
Morphology of electrodes was qualified by means of SEM. Free enzyme work
was performed using the prepared film electrode and glucose oxidase. Linear
increases were observed in the amperometric response currents of the electrode
versus increasing glucose concentrations. It was shown that this film can be
used for hydrogen peroxide producing enzymes. 

Kaynakça

  • 1. Ahmed, W., Sidhu, J.P.S., Toze S., “Speciation and frequency of virulence genes of Enterococcus spp. isolated from rainwater tank samples in southeast Queensland, Australia.” Environmental Science and Technology, 46(12):6843-6850, (2012).
  • 2. Wang, Z., Liu, F., Teng, X., Zhao, C., Lu C. “Detection of hydrogen peroxide in rainwater based on Mg-Al-carbonate layered double hydroxides-catalyzed luminol chemiluminescence”, Analyst, 136:4986-4990, (2011).
  • 3. Campelo, G., Souza, S.D., Bezerra, P.A., Paula, A., Paim, S., Marques, D., Paim, A.P.S., Lavorante, A.F. “A multicommuted flow system for fast screening/sequential spectrophotometric determination of dichromate, salicylic acid, hydrogen peroxide and starch in milk samples”,Food Control, 46:127-135, (2014).
  • 4. Hu, A., Liu, Y., Deng, H., Hong, G., Liu, A. “Fluorescent hydrogen peroxide sensor based on cupric oxide nanoparticles and its application for glucose and L-lactate detection”, Biosens. Bioelectron., 61: 374-378,2014.
  • 5. Lu, S., Song, J., Campbell-Palmer, L. “A modified chemiluminescence method for hydrogen peroxide determination in apple fruit tissues”, Sci. Hortic., 120: 336-341, (2009).
  • 6. Nakamura, H., Mogi, Y., Akimoto, T., Naemura, K., Kato, T., Yano, K., Karube, I. “An enzyme-chromogenic surface plasmon resonance biosensor probe for hydrogen peroxide determination using a modified Trinder’s reagent”, Biosens. Bioelectron. 24: 455-460, (2008).
  • 7. Rodrigues, S.S.M., Ribeiro, D.S.M., Molina-garcia, L., Medina, A.R., Prior, J.A.V., Santos, J.L.M. 2014. “Fluorescence enhancement of CdTe MPA-capped quantum dots by glutathione for hydrogen peroxide determination”, Talanta, 122:157-165, (2014).
  • 8. Baghayeria, M., Veisib, H., “Fabrication of a facile electrochemical biosensor for hydrogen peroxide using efficient catalysis of hemoglobin on the porous Pd@Fe3O4-MWCNT nanocomposite”, Biosensors and Bioelectronics, 74:190-198, (2015).
  • 9. Choi, M.M.F., Yiu, T.P. “Immobilization of beef liver catalase on eggshell membrane for fabrication of hydrogen peroxide biosensor”, Enzym. Microb. Technol., 34:41-47, (2004).
  • 10. Pei, J., Li, X., “Xanthine and hypoxanthine sensors based on xanthine oxidase immobilize on a CuPtCl6 chemically modified electrode and liquid chromatography electrochemical detection”, Anal. Chim. Acta, 414: 205-213, (2000).
Yıl 2017, Cilt: 30 Sayı: 4, 104 - 112, 11.12.2017

Öz

Kaynakça

  • 1. Ahmed, W., Sidhu, J.P.S., Toze S., “Speciation and frequency of virulence genes of Enterococcus spp. isolated from rainwater tank samples in southeast Queensland, Australia.” Environmental Science and Technology, 46(12):6843-6850, (2012).
  • 2. Wang, Z., Liu, F., Teng, X., Zhao, C., Lu C. “Detection of hydrogen peroxide in rainwater based on Mg-Al-carbonate layered double hydroxides-catalyzed luminol chemiluminescence”, Analyst, 136:4986-4990, (2011).
  • 3. Campelo, G., Souza, S.D., Bezerra, P.A., Paula, A., Paim, S., Marques, D., Paim, A.P.S., Lavorante, A.F. “A multicommuted flow system for fast screening/sequential spectrophotometric determination of dichromate, salicylic acid, hydrogen peroxide and starch in milk samples”,Food Control, 46:127-135, (2014).
  • 4. Hu, A., Liu, Y., Deng, H., Hong, G., Liu, A. “Fluorescent hydrogen peroxide sensor based on cupric oxide nanoparticles and its application for glucose and L-lactate detection”, Biosens. Bioelectron., 61: 374-378,2014.
  • 5. Lu, S., Song, J., Campbell-Palmer, L. “A modified chemiluminescence method for hydrogen peroxide determination in apple fruit tissues”, Sci. Hortic., 120: 336-341, (2009).
  • 6. Nakamura, H., Mogi, Y., Akimoto, T., Naemura, K., Kato, T., Yano, K., Karube, I. “An enzyme-chromogenic surface plasmon resonance biosensor probe for hydrogen peroxide determination using a modified Trinder’s reagent”, Biosens. Bioelectron. 24: 455-460, (2008).
  • 7. Rodrigues, S.S.M., Ribeiro, D.S.M., Molina-garcia, L., Medina, A.R., Prior, J.A.V., Santos, J.L.M. 2014. “Fluorescence enhancement of CdTe MPA-capped quantum dots by glutathione for hydrogen peroxide determination”, Talanta, 122:157-165, (2014).
  • 8. Baghayeria, M., Veisib, H., “Fabrication of a facile electrochemical biosensor for hydrogen peroxide using efficient catalysis of hemoglobin on the porous Pd@Fe3O4-MWCNT nanocomposite”, Biosensors and Bioelectronics, 74:190-198, (2015).
  • 9. Choi, M.M.F., Yiu, T.P. “Immobilization of beef liver catalase on eggshell membrane for fabrication of hydrogen peroxide biosensor”, Enzym. Microb. Technol., 34:41-47, (2004).
  • 10. Pei, J., Li, X., “Xanthine and hypoxanthine sensors based on xanthine oxidase immobilize on a CuPtCl6 chemically modified electrode and liquid chromatography electrochemical detection”, Anal. Chim. Acta, 414: 205-213, (2000).
Toplam 10 adet kaynakça vardır.

Ayrıntılar

Bölüm Chemistry
Yazarlar

Servet Çete

Munise Özyurt Bu kişi benim

Ertan Yildirim

Yayımlanma Tarihi 11 Aralık 2017
Yayımlandığı Sayı Yıl 2017 Cilt: 30 Sayı: 4

Kaynak Göster

APA Çete, S., Özyurt, M., & Yildirim, E. (2017). PREPARATION OF FILM ELECTRODE USING DOPANT FOR CONSTRUCTION OF BIOSENSORS SENSITIVE TO HYDROGEN PEROXIDE. Gazi University Journal of Science, 30(4), 104-112.
AMA Çete S, Özyurt M, Yildirim E. PREPARATION OF FILM ELECTRODE USING DOPANT FOR CONSTRUCTION OF BIOSENSORS SENSITIVE TO HYDROGEN PEROXIDE. Gazi University Journal of Science. Aralık 2017;30(4):104-112.
Chicago Çete, Servet, Munise Özyurt, ve Ertan Yildirim. “PREPARATION OF FILM ELECTRODE USING DOPANT FOR CONSTRUCTION OF BIOSENSORS SENSITIVE TO HYDROGEN PEROXIDE”. Gazi University Journal of Science 30, sy. 4 (Aralık 2017): 104-12.
EndNote Çete S, Özyurt M, Yildirim E (01 Aralık 2017) PREPARATION OF FILM ELECTRODE USING DOPANT FOR CONSTRUCTION OF BIOSENSORS SENSITIVE TO HYDROGEN PEROXIDE. Gazi University Journal of Science 30 4 104–112.
IEEE S. Çete, M. Özyurt, ve E. Yildirim, “PREPARATION OF FILM ELECTRODE USING DOPANT FOR CONSTRUCTION OF BIOSENSORS SENSITIVE TO HYDROGEN PEROXIDE”, Gazi University Journal of Science, c. 30, sy. 4, ss. 104–112, 2017.
ISNAD Çete, Servet vd. “PREPARATION OF FILM ELECTRODE USING DOPANT FOR CONSTRUCTION OF BIOSENSORS SENSITIVE TO HYDROGEN PEROXIDE”. Gazi University Journal of Science 30/4 (Aralık 2017), 104-112.
JAMA Çete S, Özyurt M, Yildirim E. PREPARATION OF FILM ELECTRODE USING DOPANT FOR CONSTRUCTION OF BIOSENSORS SENSITIVE TO HYDROGEN PEROXIDE. Gazi University Journal of Science. 2017;30:104–112.
MLA Çete, Servet vd. “PREPARATION OF FILM ELECTRODE USING DOPANT FOR CONSTRUCTION OF BIOSENSORS SENSITIVE TO HYDROGEN PEROXIDE”. Gazi University Journal of Science, c. 30, sy. 4, 2017, ss. 104-12.
Vancouver Çete S, Özyurt M, Yildirim E. PREPARATION OF FILM ELECTRODE USING DOPANT FOR CONSTRUCTION OF BIOSENSORS SENSITIVE TO HYDROGEN PEROXIDE. Gazi University Journal of Science. 2017;30(4):104-12.