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Chemical and Biosensors

Electrochemistry of Hemoglobin on a Gold Colloid‐1,4‐Benzenedimethanethiol Modified Electrode and Electrocatalyte Detection of Hydrogen Peroxide

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Pages 2911-2924 | Received 08 Jun 2004, Accepted 01 Aug 2004, Published online: 22 Aug 2007

References

  • Ryan , M. D. , Bowden , E. F. and Chambers , J. Q. 1994 . Dynamic electrochemistry: methodology and application . Anal. Chem. , 66 ( 12 ) : 360R – 427R . [PUBMED]
  • Anderson , J. L. , Bowden , E. F. and Pickup , P. G. 1996 . Dynamic electrochemistry: methodology and applications . Anal. Chem. , 68 ( 12 ) : 379R – 444R . [CROSSREF]
  • Han , X. J. , Cheng , W. L. , Zhang , Z. L. , Dong , S. J. and Wang , E. K. 2002 . Direct electron transfer between hemoglobin and a glassy carbon electrode facilitated by lipid‐protected gold nanoparticles . Biochimica et Biophysica Acta , 1556 ( 2–3 ) : 273 – 277 . [PUBMED]
  • Huang , H. , He , P. L. , Hu , N. F. and Zeng , Y. H. 2003 . Electrochemical and electrocatalytic properties of myoglobin and hemoglobin incorporated in carboxymethyl cellulose film . Bioelectrochemistry , 61 ( 1 ) : 29 – 38 . [PUBMED] [CROSSREF]
  • Ferri , T. , Poscia , A. and Santucci , R. 1998 . Direct electrochemistry of membrane‐entrapped horseradish peroxidase: Part I. A voltammetric and spectroscopic study . Bioelectrochem. Bioenerg. , 44 ( 2 ) : 177 – 181 . [CROSSREF]
  • Gorton , L. , Lindgren , A. , Larsson , T. , Munteanu , F. D. , Ruzgas , T. and Gazaryan , I. 1999 . Direct electron transfer between heme‐containing enzymes and electrodes as a basis for third generation biosensors . Anal. Chim. Acta , 400 ( 1–3 ) : 91 – 108 . [CROSSREF]
  • Gu , H. Y. , Yu , A. M. and Chen , H. Y. 2001 . Direct electron transfer and characterization of hemoglobin immobilized on a Au colloid‐cysteamine‐modified gold electrode . J. Electroanal. Chem. , 516 ( 1–2 ) : 119 – 126 . [CSA] [CROSSREF]
  • Hu , N. 2001 . Direct electrochemistry of redox proteins or enzymes at various film electrodes and their possible applications in monitoring some pollutants . Pure Appl. Chem. , 73 ( 12 ) : 1979 – 1991 .
  • Rusling , J. F. and Nassar , A.‐E. F. 1993 . Enhanced electron transfer for myoglobin in surfactant films on electrodes . J. Am. Chem. Soc. , 115 ( 25 ) : 11891 – 11897 .
  • Hu , N. and Rusling , J. F. 1997 . Electrochemistry and catalysis with myoglobin in hydrated poly(ester sulfonic acid) ionomer films . Langmuir , 13 ( 15 ) : 4119 – 4125 . [CROSSREF]
  • Hu , Y. and Hu , N. 2000 . Electrochemistry and electrocatalysis with myoglobin in biomembrane‐like surfactant‐polymer 2C12N+PA− composite films . Talanta , 50 ( 6 ) : 1183 – 1195 . [CROSSREF]
  • Zhou , Y. , Hu , Z. and Zeng , Y. 2002 . Heme protein‐clay films: direct electrochemistry and electrochemical catalysis . Langmuir , 18 ( 22 ) : 8573 – 8579 . [CROSSREF]
  • Caruso , F. 2001 . Nanoengineering of particle surfaces . Adv. Mater. , 13 ( 1 ) : 11 – 22 . [CROSSREF]
  • Wang , L. and Wang , E. K. 2004 . Direct electron transfer between cytochrome c and a gold nanoparticles modified electrode . Electrochem. Commun. , 6 ( 1 ) : 49 – 54 . [CROSSREF]
  • Brown , K. R. , Lyon , L. A. , Fox , A. P. , Natan , M. J. and Reiss , B. D. 2000 . Hydroxylamine seeding of colloidal Au nanoparticles. 3. Controlled formation of conductive Au films . Chem. Mater. , 12 ( 2 ) : 314 – 323 . [CROSSREF]
  • Kharitonov , A. B. , Alfonta , L. , Katz , E. and Willner , I. 2000 . Probing of bioaffinity interactions at interfaces using impedance spectroscopy and chronopotentiometry . J. Electroanal. Chem. , 487 ( 2 ) : 133 – 141 . [CROSSREF]
  • Fan , C. H. , Li , G. X. , Zhu , J. Q. and Zhu , D. X. 2000 . A reagentless nitric oxide biosensor based on hemoglobin–DNA films . Anal. Chim. Acta , 423 ( 1 ) : 95 – 100 . [CROSSREF]
  • Laviron , E. 1982 . Electroanalytical Chemistry, Vol. 12 Edited by: Brad , A. J. 53 – 157 . New York : Marcel Dekker .
  • Murray , R. W. 1984 . Electroanalytical Chemistry, Vol. 13 Edited by: Brad , A. J. 191 – 368 . New York : Marcel Dekker .
  • Lavioron , E. 1979 . The use of linear potential sweep voltammetry and of A.C. voltammetry for the study of the surface electrochemical reaction of strongly adsorbed systems and of redox modified electrodes . J. Electroanal. Chem. , 100 : 263 – 270 . [CROSSREF]
  • Zhao , G. C. , Zhang , L. , Wei , X. W. and Yang , Z. S. 2003 . Myoglobin on multi‐walled carbon nanotubes modified electrode: direct electrochemistry and electrocatalysis . Electro. Commun. , 5 : 825 – 829 . [CROSSREF]
  • Laviron , E. 1974 . Adsorption, autoinhibition and autocatalysis in polarography and in linear potential sweep voltammetry . J. Electroanal. Chem. , 52 ( 3 ) : 355 – 393 . [CROSSREF]
  • Laviron , E. 1979 . General expression of the linear potential sweep voltammogram in the case of diffusionless electrochemical systems . J. Electroanal. Chem. , 101 ( 1 ) : 19 – 28 . [CROSSREF]
  • Bond , A. M. 1980 . Modern Polarographic Methods in Analytical Chemistry 27 – 45 . New York : Marcel Dekker .
  • Shen , L. and Hu , N. F. 2004 . Heme protein films with polyamidoamine dendrimer: direct electrochemistry and electrocatalysis . Biochimica et Biophysica Acta , 1608 ( 1 ) : 23 – 33 . [PUBMED]
  • Xiao , Y. , Ju , H. and Chen , H. 1999 . A reagentless hydrogen peroxide sensor based on incorporation of horseradish peroxidase in poly(thionine) film on a monolayer modified electrode . Anal. Chim. Acta , 391 ( 3 ) : 291 – 306 . [CROSSREF]
  • Tatsuma , T. , Okawa , Y. and Watanabe , T. 1989 . Enzyme monolayer‐ and bilayer‐modified tin oxide electrodes for the determination of hydrogen peroxide and glucose . Anal. Chem. , 61 ( 21 ) : 2352 – 2355 .
  • Qian , J. , Liu , Y. , Liu , H. , Yu , T. and Deng , J. 1995 . Characterization of regenerated silk fibroin membrane for immobilizing peroxidase and construction of an amperometric hydrogen peroxide sensor employing phenazine methosulphate as electron shuttle . J. Electroanal. Chem. , 397 ( 1–2 ) : 157 – 162 . [CROSSREF]
  • Hiroyuki , O. 1998 . Electron transfer reaction of heme‐proteins in ion conductive polymer matrix . Electrochim. Acta , 43 ( 10–11 ) : 1581 – 1587 . [CSA]
  • Fan , C. , Wang , H. , Zhu , D. , Wagner , G. and Li , G. 2000 . Incorporation of horseradish peroxidase in a Kieselguhr membrane and the application to a mediator‐free hydrogen peroxide sensor . Anal. Lett. , 33 ( 13 ) : 2631 – 2645 .
  • Fan , C. , Zhuang , Y. , Li , G. , Zhu , J. and Zhu , D. 2000 . Direct electrochemistry and enhanced catalytic activity for hemoglobin in a sodium montmorillonite film . Electroanalysis , 12 ( 14 ) : 1156 – 1158 . [CROSSREF]
  • Lei , C. , Wollenberger , U. , Bistolas , N. , Guiseppi‐Elis , A. and Scheller , F. W. 2002 . Electron transfer of hemoglobin at electrodes modified with colloidal clay nanoparticles . Anal. Bioanal. Chem. , 372 ( 2 ) : 235 – 239 . [PUBMED] [CSA] [CROSSREF]
  • Lotzbeyer , T. , Schuhmann , W. and Schmidt , J. L. 1997 . Minizymes: a new strategy for the development of reagentless amperometric biosensors based on direct electron‐transfer process . Bioelectrochem. Bioenerg. , 42 ( 1 ) : 1 – 3 . [CSA] [CROSSREF]

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