Dettlaff A, Jakóbczyk P, Ficek M, Wilk B, Szala M, Wojtas J, Ossowski T, Bogdanowicz R
Gdańsk University of Technology, Faculty of Electronics, Telecommunications and Informatics, Narutowicza 11/12, 80-233, Gdańsk, Poland.
Gdańsk University of Technology, Faculty of Electronics, Telecommunications and Informatics, Narutowicza 11/12, 80-233, Gdańsk, Poland.
J Hazard Mater. 2020 Apr 5;387:121672. doi: 10.1016/j.jhazmat.2019.121672. Epub 2019 Nov 11.
The study is devoted to the electrochemical detection of trace explosives on boron-doped diamond/graphene nanowall electrodes (B:DGNW). The electrodes were fabricated in a one-step growth process using chemical vapour deposition without any additional modifications. The electrochemical investigations were focused on the determination of the important nitroaromatic explosive compounds, 2,4,6-trinitrotoluene (TNT) and 2,4,6-trinitroanisole (TNA). The distinct reduction peaks of both studied compounds were observed regardless of the pH value of the solution. The reduction peak currents were linearly related to the concentration of TNT and TNA in the range from 0.05-15 ppm. Nevertheless, two various linear trends were observed, attributed respectively to the adsorption processes at low concentrations up to the diffusional character of detection for larger contamination levels. The limit of detection of TNT and TNA is equal to 73 ppb and 270 ppb, respectively. Moreover, the proposed detection strategy has been applied under real conditions with a significant concentration of interfering compounds - in landfill leachates. The proposed bare B:DGNW electrodes were revealed to have a high electroactive area towards the voltammetric determination of various nitroaromatic compounds with a high rate of repeatability, thus appearing to be an attractive nanocarbon surface for further applications.
该研究致力于在硼掺杂金刚石/石墨烯纳米壁电极(B:DGNW)上对痕量炸药进行电化学检测。这些电极是通过化学气相沉积一步生长法制备的,无需任何额外修饰。电化学研究聚焦于测定重要的硝基芳香族炸药化合物2,4,6-三硝基甲苯(TNT)和2,4,6-三硝基苯甲醚(TNA)。无论溶液的pH值如何,均观察到了这两种研究化合物的明显还原峰。还原峰电流与TNT和TNA的浓度在0.05 - 15 ppm范围内呈线性相关。然而,观察到了两种不同的线性趋势,分别归因于低浓度下的吸附过程以及较高污染水平下检测的扩散特性。TNT和TNA的检测限分别为73 ppb和270 ppb。此外,所提出的检测策略已在实际条件下应用于含有大量干扰化合物的垃圾渗滤液中。结果表明,所提出的裸B:DGNW电极对各种硝基芳香族化合物具有高电活性面积,伏安测定具有高重复性,因此似乎是一种有吸引力的纳米碳表面,可用于进一步的应用。