Electrocatalytic oxidation of hydrazine using glassy carbon electrode modified with carbon nanotube and terpyridine manganese(II) complex

被引:58
作者
Kamyabi, M. A. [1 ]
Narimani, O. [1 ]
Monfared, H. Hosseini [1 ]
机构
[1] Univ Zanjan, Dept Chem, Fac Sci, Zanjan, Iran
关键词
Electrocatalytic oxidation; Terpyridine manganese(II) complex; Carbon nanotube; Hydrazine; PASTE ELECTRODE; CAPILLARY-ELECTROPHORESIS; DIRECT ELECTROCHEMISTRY; 4-PYRIDYL HYDROQUINONE; FIBER MICROELECTRODES; AMPEROMETRIC SENSOR; FILM; GRAPHITE; PHTHALOCYANINE; ACID;
D O I
10.1016/j.jelechem.2010.03.037
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Here, we report a simple and extremely effective method to modify a glassy carbon (GC) electrode with carbon nanotubes (CNTs) and [Mn(CH3COO)(CH3OH)(2)(pyterpy)]ClO4, (pyterpy = 4'-(4-pyridyl)-2,2':6',2 ''-terpyridine) complex. The kinetics of the reaction between, the terpyridine manganese(II) complex, mediator and hydrazine has been characterized using cyclic voltammetry and rotating disk electrode voltammetry. The catalytic currents were proportional to the concentration of hydrazine giving rise to calibration curves characterized by two linear segments. The linear segment over the concentration range of 1.00 x 10(-3)-1.05 mM could be used with analytical purposes to determination of hydrazine with a detection limit of 0.50 mu M and a sensitivity of 0.038 mu A/mu M. The heterogeneous rate constant, k' for the oxidation of hydrazine at the surface of the modified electrode was determined by rotating disk electrode voltammetry using the Koutecky-Levich plot. The transfer coefficient (alpha) for electrocatalytic oxidation of hydrazine and the diffusion coefficient of this substance under the experimental conditions were also investigated. The resulting modified electrode retains its initial response for at least one month if stored dry in air. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:67 / 73
页数:7
相关论文
共 66 条
  • [21] Electrocatalytic oxidation of hydrazine at a cobalt(II) Schiff-base-modified carbon paste electrode
    Kamyabi, Mohammad Ali
    Shahabi, Shirin
    Hosseini-Monfared, Hassan
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2008, 155 (01) : F8 - F12
  • [22] Nanotube molecular wires as chemical sensors
    Kong, J
    Franklin, NR
    Zhou, CW
    Chapline, MG
    Peng, S
    Cho, KJ
    Dai, HJ
    [J]. SCIENCE, 2000, 287 (5453) : 622 - 625
  • [23] Comparison of the electrochemical reactivity of electrodes modified with carbon nanotubes from different sources
    Lawrence, NS
    Deo, RP
    Wang, J
    [J]. ELECTROANALYSIS, 2005, 17 (01) : 65 - 72
  • [24] HYDRAZINE GENOTOXICITY IN THE NEONATAL RAT
    LEAKAKOS, T
    SHANK, RC
    [J]. TOXICOLOGY AND APPLIED PHARMACOLOGY, 1994, 126 (02) : 295 - 300
  • [25] Fullerene pipes
    Liu, J
    Rinzler, AG
    Dai, HJ
    Hafner, JH
    Bradley, RK
    Boul, PJ
    Lu, A
    Iverson, T
    Shelimov, K
    Huffman, CB
    Rodriguez-Macias, F
    Shon, YS
    Lee, TR
    Colbert, DT
    Smalley, RE
    [J]. SCIENCE, 1998, 280 (5367) : 1253 - 1256
  • [26] Electrocatalytic oxidation of hydrazine at overoxidized polypyrrole film modified glassy carbon electrode
    Majidi, Mir Reza
    Jouyban, Abolghasem
    Asadpour-Zeynali, Karim
    [J]. ELECTROCHIMICA ACTA, 2007, 52 (21) : 6248 - 6253
  • [27] MALAKI EA, 1989, TALANTA, V36, P431
  • [28] Palladium, nanoparticle decorated carbon ionic liquid electrode for highly efficient electrocatalytic oxidation and determination of hydrazine
    Maleki, Norouz
    Safavi, Afsaneh
    Farjami, Elahe
    Tajabadi, Fariba
    [J]. ANALYTICA CHIMICA ACTA, 2008, 611 (02) : 151 - 155
  • [29] Basal plane pyrolytic graphite modified electrodes: Comparison of carbon nanotubes and graphite powder as electrocatalysts
    Moore, RR
    Banks, CE
    Compton, RG
    [J]. ANALYTICAL CHEMISTRY, 2004, 76 (10) : 2677 - 2682
  • [30] Electrocatalytic detection of thiols using an edge plane pyrolytic graphite electrode
    Moore, RR
    Banks, CE
    Compton, RG
    [J]. ANALYST, 2004, 129 (08) : 755 - 758