Electrochemical reduction of trinitrotoluene on core-shell tin-carbon electrodes

被引:21
作者
Grigoriants, Irena [1 ]
Markovsky, Boris [1 ]
Persky, Rachel [1 ]
Perelshtein, Ilana [1 ]
Gedanken, Aharon [1 ]
Aurbach, Doron [1 ]
Filanovsky, Boris [2 ]
Bourenko, Tatiana [2 ]
Felner, Israel [3 ]
机构
[1] Bar Ilan Univ, Dept Chem, IL-52900 Ramat Gan, Israel
[2] Medis El, IL-71291 Lod, Israel
[3] Hebrew Univ Jerusalem, Racah Inst Phys, IL-91904 Jerusalem, Israel
关键词
2,4,6-Trinitrotoluene; Electrochemical reduction; Core-shell structures; Tin-carbon electrodes; Reaction schemes;
D O I
10.1016/j.electacta.2008.07.005
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
In this work, we studied the electrochemical process of 2,4,6-trinitrotoluene (TNT) reduction on a new type of electrodes based on a core-shell tin-carbon Sn(C) structure. The Sn(C) composite was prepared from the precursor tetramethyl-tin Sn(CH3)(4), and the product contained a core of submicron-sized tin particles uniformly enveloped with carbon shells. Cyclic voltammograms of Sn(C) electrodes in aqueous sodium chloride solutions containing TNT show three well-pronounced reduction waves in the potential range of -0.50 to -0.80 V (vs. an Ag/AgCl/Cl- reference electrode) that correspond to the multistep process of TNT reduction. Electrodes containing Sn(C) particles annealed at 800,C under argon develop higher voltammetric currents of TNT reduction (comparing to the as-prepared tin-carbon material) due to stabilization of the carbon shell. It is suggested that the reduction of TNT on core-shell tin-carbon electrodes is an electrochemically irreversible process. A partial oxidation of the TNT reduction products occurred at around -0.20V. The electrochemical response of TNT reduction shows that it is not controlled by the diffusion of the active species to/from the electrodes but rather by interfacial charge transfer and possible adsorption phenomena. The tin-carbon electrodes demonstrate significantly stable behavior for TNT reduction in NaCl solutions and provide sufficient reproducibility with no surface fouling through prolonged voltammetric cycling. It is presumed that tin nanoparticles, which constitute the core, are electrochemically inactive towards TNT reduction. but Sn or SnO2 formed on the electrodes during TNT reduction may participate in this reaction as catalysts or carbon-modifying agents. The nitro-groups of TNT can be reduced irreversibly (via two possible paths) by three six-electron transfers, to 2,4,6-triaminotoluene, as follows from mass-spectrometric studies. The tin-carbon electrodes described herein may serve as amperometric sensors for the detection of trace TNT. (C) 2008 Elsevier Ltd. All rights reserved.
引用
收藏
页码:690 / 697
页数:8
相关论文
共 33 条
[1]   Electrochemical studies of single-wall carbon nanotubes in aqueous solutions [J].
Barisci, JN ;
Wallace, GG ;
Baughman, RH .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2000, 488 (02) :92-98
[2]   DETERMINATION OF NITRO AROMATIC, NITRAMINE, AND NITRATE ESTER EXPLOSIVE COMPOUNDS IN EXPLOSIVE MIXTURES AND GUNSHOT RESIDUE BY LIQUID-CHROMATOGRAPHY AND REDUCTIVE ELECTROCHEMICAL DETECTION [J].
BRATIN, K ;
KISSINGER, PT ;
BRINER, RC ;
BRUNTLETT, CS .
ANALYTICA CHIMICA ACTA, 1981, 130 (02) :295-311
[3]   Disposable electrochemical sensor for determination of nitroaromatic compounds by a single-run approach [J].
Chen, Jyh-Cheng ;
Shih, Jiun-Le ;
Liu, Chi-Ho ;
Kuo, Mei-Yueh ;
Zen, Jyh-Myng .
ANALYTICAL CHEMISTRY, 2006, 78 (11) :3752-3757
[4]   Raman spectroscopy of graphene and graphite: Disorder, electron-phonon coupling, doping and nonadiabatic effects [J].
Ferrari, Andrea C. .
SOLID STATE COMMUNICATIONS, 2007, 143 (1-2) :47-57
[5]  
Filanovsky B, 1999, REV ANAL CHEM, V18, P293
[6]  
FILANOVSKY B, 2007, Patent No. 7244345
[7]   Carbon electrodes modified with TiO2/metal nanoparticles and their application to the detection of trinitrotoluene [J].
Filanovsky, Boris ;
Markovsky, Boris ;
Bourenko, Tatiana ;
Perkas, Nina ;
Persky, Rachel ;
Gedanken, Aharon ;
Aurbach, Doron .
ADVANCED FUNCTIONAL MATERIALS, 2007, 17 (09) :1487-1492
[8]   Synthesis and electrochemical performance of novel core/shell structured nanocomposites [J].
Fu, LJ ;
Liu, H ;
Zhang, HP ;
Li, C ;
Zhang, T ;
Wu, YP ;
Holze, R ;
Wu, HQ .
ELECTROCHEMISTRY COMMUNICATIONS, 2006, 8 (01) :1-4
[9]   Electrochemical detectors prepared by electroless deposition for microfabricated electrophoresis chips [J].
Hilmi, A ;
Luong, JHT .
ANALYTICAL CHEMISTRY, 2000, 72 (19) :4677-4682
[10]   Development of electrokinetic capillary electrophoresis equipped with amperometric detection for analysis of explosive compounds [J].
Hilmi, A ;
Luong, JHT ;
Nguyen, AL .
ANALYTICAL CHEMISTRY, 1999, 71 (04) :873-878