Curtin Institute of Functional Materials and Interfaces, Department of Chemistry, Curtin University , GPO Box U1987, Perth, Western Australia 6845, Australia.
Anal Chem. 2017 Apr 18;89(8):4729-4736. doi: 10.1021/acs.analchem.7b00679. Epub 2017 Apr 4.
A new electrochemical method to detect and quantify the explosive compound 2,4,6-trinitrotoluene (TNT) in aqueous solutions is demonstrated. A disposable thin-film electrode modified with a droplet of a gel-polymer electrolyte (GPE) was immersed directly into samples of TNT at concentrations of 1-10 μg/mL. The GPE contained the hydrophobic room-temperature ionic liquid (RTIL) trihexyltetradecylphosphonium bis(trifluoromethylsulfonyl)imide ([P][NTf]) and the polymer poly(hexyl methacrylate). The RTIL acted to preconcentrate TNT into the GPE and provided ionic conductivity. The polymer provided both (i) sufficient viscosity to ensure mechanical stability of the GPE and (ii) strong hydrophobicity to minimize leaching of the RTIL. Square wave voltammetry was performed on the first reduction peak of TNT-preconcentrated samples (15 min soaking with mechanical stirring), with linear plots of peak current vs cumulative concentration of TNT, giving an averaged limit of detection of 0.37 μg/mL (aqueous phase concentration). Additionally, the voltammetry of the first reduction peak of TNT in [P][NTf] was unaffected by the presence of oxygen-in contrast to that observed in an imidazolium-based RTIL-providing excellent selectivity over oxygen in real environments. The sensor device was able to quickly and easily quantify TNT concentrations at typical ground water contamination levels. The low-cost and portability of the sensor device, along with the minimal amounts of GPE materials required, make this a viable platform for the onsite monitoring of explosives, which is currently a significant operational challenge.
一种新的电化学方法被证明可以用于检测和定量水中的爆炸物 2,4,6-三硝基甲苯(TNT)。一种带有凝胶聚合物电解质(GPE)液滴的一次性薄膜电极被直接浸入浓度为 1-10μg/mL 的 TNT 样品中。GPE 中含有疏水性室温离子液体(RTIL)三己基十四烷基膦双(三氟甲烷磺酰基)亚胺([P][NTf])和聚合物聚己基甲基丙烯酸酯。RTIL 用于将 TNT 预浓缩到 GPE 中并提供离子导电性。聚合物提供了足够的粘性(i)以确保 GPE 的机械稳定性和(ii)足够的疏水性以最小化 RTIL 的浸出。对 TNT 预浓缩样品的第一个还原峰进行了方波伏安法测量(在机械搅拌下浸泡 15 分钟),峰电流与 TNT 累积浓度的线性图,得到平均检测限为 0.37μg/mL(水相浓度)。此外,TNT 在 [P][NTf]中的第一个还原峰的伏安法不受氧气存在的影响-与在基于咪唑的 RTIL 中观察到的情况形成对比,在真实环境中提供了对氧气的优异选择性。传感器设备能够快速轻松地定量典型地下水污染水平下的 TNT 浓度。传感器设备的低成本和便携性,以及所需的 GPE 材料的最小量,使其成为现场监测爆炸物的可行平台,这是目前一个重大的操作挑战。