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ELECTROCHEMISTRY

Simultaneous Electrochemical Determination of Hydroquinone and Catechol at MWNTs and Cobalt(II) Tetrakisphenylporphyrin Modified Electrode

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Pages 883-893 | Received 20 Mar 2011, Accepted 02 Oct 2011, Published online: 30 May 2012

REFERENCES

  • Adler , A. D. , F. R. Longo , F. Kampas , and J. Kim . 1970 . On the preparation of metalloporphyrins . J. Inorg. Nucl. Chem. 32 : 2443 – 2445 .
  • Ahammad , A. J. S. , S. Sarker , M. A. Rahman , and J. J. Lee . 2010 . Simultaneous determination of hydroquinone and catechol at an activated glassy carbon electrode . Electroanalysis 22 : 694 – 700 .
  • Amemiya , S. , P. Buhlmann , Y. Umezawa , R. C. Jagessar , and D. H. Burns . 1999 . An ion-selective electrode for acetate based on a urea-functionalized porphyrin as a hydrogen-bonding ionophore . Anal. Chem. 71 : 1049 – 1054 .
  • Choi , A. , H. Jeong , S. Kim , S. Jo , and S. Jeon . 2008. Electrocatalytic reduction of dioxygen by cobalt porphyrin-modified glassy carbon electrode with single-walled carbon nanotubes and nafion in aqueous solutions. Electrochim. Acta 53: 2579–2584.
  • Choi , M. S. , T. Yamazaki , I. Yamazaki , and T. Aida . 2004 . Bioinspired molecular design of light-harvesting multiporphyrin arrays . Angew. Chem. Int. Ed. 43 : 150 – 158 .
  • de Carvalho , R. M. , C. Mello , and L. T. Kubota . 2000 . Simultaneous determination of phenol isomers in binary mixtures by differential pulse voltammetry using carbon fibre electrode and neural network with pruning as a multivariate calibration tool . Anal. Chim. Acta 420 : 109 – 121 .
  • Du , H. , J. Ye , J. Zhang , X. Huang , and C. Yu . 2011 . A Voltammetric sensor based on graphene-modified electrode for simultaneous determination of catechol and hydroquinone . J. Electroanal. Chem. 650 : 209 – 213 .
  • Ghanem , M. A. 2007 . Electrocatalytic activity and simultaneous determination of catechol and hydroquinone at mesoporous platinum electrode . Electrochem. Commun. 9 : 2501 – 2506 .
  • Guldi , D. M. 2005 . Biomimetic assemblies of carbon nanostructures for photochemical energy conversion . J. Phys. Chem. B 109 : 11432 – 11441 .
  • Guldi , D. M. , G. M. A. Rahman , V. Sgobba , and C. Ehli . 2006 . Multifunctional molecular carbon materials-from fullerenes to carbon nanotubes . Chem. Soc. Rev. 35 : 471 – 487 .
  • Henning , T. , and F. Salama . 1998 . Carbon in the Universe . Science 282 : 2204 – 2210 .
  • Inagaki , M. , K. Kaneko , and T. Nishizawa . 2004 . Nanocarbons—Recent research in Japan . Carbon 42 : 1401 – 1417 .
  • Langa , F. , M. J. Gomez-Escalonilla , and P. de la Cruz . 2007 . Carbon nanotubes and porphyrins: An exciting combination for optoelectronic devices . J. Porphyrins Phthalocyanines 11 : 348 – 358 .
  • Lei , J. , H. Ju , and O. Ikeda . 2004 . Catalytic oxidation of nitric oxide and nitrite mediated by water-soluble high-valent iron porphyrins at an Ito electrode . J. Electroanal. Chem. 567 : 331 – 338 .
  • Li , M. , F. Ni , Y. Wang , S. Xu , D. Zhang , S. Chen , and L. Wang . 2009 . Sensitive and facile determination of catechol and hydroquinone simultaneously under coexistence of resorcinol with a Zn/Al layered double hydroxide film modified glassy carbon electrode . Electroanalysis 21 : 1521 – 1526 .
  • Long , J. W. , and R. W. Murray . 1998 . A selective electrochemical gas chromatography detector based on axial ligation reactions of a molten iron porphyrin redox polyether hybrid . Anal. Chem. 70 : 3355 – 3361 .
  • Murakami , H. , T. Nomura , and N. Nakashima . 2003 . Noncovalent porphyrin-functionalized single-walled carbon nanotubes in solution and the formation of porphyrin-nanotube nanocomposites . Chem. Phys. Lett. 378 : 481 – 485 .
  • Qu , J. , Y. Shen , X. Qu , and S. Dong . 2004 . Electrocatalytic reduction of oxygen at multi-walled carbon nanotubes and cobalt porphyrin modified glassy carbon electrode . Electroanalysis 16 : 1444 – 1450 .
  • Salimi , A. , H. MamKhezri , R. Hallaj , and S. Zandi . 2007 . Modification of glassy carbon electrode with multi-walled carbon nanotubes and iron (iii)-porphyrin film: Application to chlorate, bromate and iodate detection . Electrochim. Acta 52 : 6097 – 6105 .
  • Wang , L. , P. F. Huang , J. Y. Bai , H. J. Wang , L. Y. Zhang , and Y. Q. Zhao . 2007 . Covalent modification of a glassy carbon electrode with penicillamine for simultaneous determination of hydroquinone and catechol . Microchim. Acta 158 : 151 – 157 .
  • Wang Z. H. , S. J. Li , and Q. Z. Lv . 2007 . Simultaneous determination of dihydroxybenzene isomers at single-wall carbon nanotube electrode . Sensor. Actuat. B 127 : 420 – 425 .
  • Wang , Z. H. , Q. l. Liang , Y. M. Wang , and G. Luo . 2003 . Carbon nanotube-intercalated graphite electrodes for simultaneous determination of dopamine and serotonin in the presence of ascorbic acid . J. Electroanal. Chem. 540 : 129 – 134 .
  • Wu , Y. 2010. Electrocatalysis and sensitive determination of Sudan I at the single-walled carbon nanotubes and iron (III)-porphyrin modified glassy carbon electrodes. Food Chem. 121: 580–584.
  • Xu , Q. , and S. F. Wang . 2005 . Electrocatalytic oxidation and direct determination of L-tyrosine by square wave voltammetry at multi-wall carbon nanotubes modified glassy carbon electrodes . Microchim. Acta 151 : 47 – 52 .
  • Yakobson , B. I. , and R. E. Smalley . 1997 . Fullerene nanotubes: C1, 000,000 and beyond . Am. Sci. 85 : 324 – 337 .
  • Yang , P. , W. Wei , and L. Yang . 2007 . Simultaneous voltammetric determination of dihydroxybenzene isomers using a poly (acid chrome blue K)/carbon nanotube composite electrode . Microchimica Acta 157 : 229 – 235 .
  • Yang , P. , Q. Zhu , Y. Chen , and F. Wang . 2009 . Simultaneous determination of hydroquinone and catechol using poly(p-aminobenzoic acid) modified glassy carbon electrode . J. Appl. Polym. Sci . 113 : 2881 – 2886 .
  • Yang , Y. , S. Chen , Q. Xue , A. Biris , and W. Zhao . 2005 . Electron transfer chemistry of octadecylamine-functionalized single-walled carbon nanotubes . Electrochim. Acta 50 : 3061 – 3067 .
  • Yin , H. , Q. Zhang , Y. Zhou , Q. Ma , T. liu , L. Zhu , and S. Ai . 2011 . Electrochemical behavior of catechol, resorcinol and hydroquinone at graphene-chitosan composite film modified glassy carbon electrode and their simultaneous determination in water samples . Electrochim. Acta 56 : 2748 – 2753 .
  • Yin , Y. , Y. Lu , P. Wu , and C. Cai . 2005 . Direct electrochemistry of redox proteins and enzymes promoted by carbon nanotubes . Sensors 5 : 220 – 234 .
  • Yu , J. , W. Du , F. Zhao , and B. Zeng . 2009 . High Sensitive simultaneous determination of catechol and hydroquinone at mesoporous carbon Cmk-3 electrode in comparison with multi-walled carbon nanotubes and Vulcan Xc-72 carbon electrodes . Electrochim. Acta 54 : 984 – 988 .
  • Zhao , D. M. , X. H. Zhang , L. J. Feng , L. Jia , and S. F. Wang . 2009 . Simultaneous determination of hydroquinone and catechol at PASA/MWNTs composite film modified glassy carbon electrode . Colloids Surf. B. 74 : 317 – 321 .
  • Zhao , K. , H. Song , S. Zhuang , L. Dai , P. He , and Y. Fang . 2007 . Determination of nitrite with the electrocatalytic property to the oxidation of nitrite on thionine modified aligned carbon nanotubes . Electrochem. Commun. 9 : 65 – 70 .

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