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A novel 3D-printed graphite/polylactic acid sensor for the electrochemical determination of 2,4,6-trinitrotoluene residues in environmental waters

三硝基甲苯 聚乳酸 材料科学 自来水 石墨 海水 爆炸物 检出限 环境化学 化学 色谱法 环境科学 复合材料 环境工程 有机化学 聚合物 地质学 海洋学
作者
Gilvana P. Siqueira,Diele A.G. Araújo,Lucas V. de Faria,David Ramos,Tiago A. Matias,Eduardo M. Richter,Thiago R. L. C. Paixão,Rodrigo A.A. Muñoz
出处
期刊:Chemosphere [Elsevier]
卷期号:340: 139796-139796 被引量:9
标识
DOI:10.1016/j.chemosphere.2023.139796
摘要

Here, lab-made graphite and polylactic acid (Gpt-PLA) biocomposite materials were used to additively manufacture electrodes via the fused deposition modeling (FDM) technique for subsequent determination of the explosive 2,4,6-trinitrotoluene (TNT, considered a persistent organic pollutant). The surface of the 3D-printed material was characterized by SEM and Raman, which revealed high roughness and the presence of defects in the graphite structure, which enhanced the electrochemical response of TNT. The 3D-printed Gpt-PLA electrode coupled to square wave voltammetry (SWV) showed suitable performance for fastly determining the explosive residues (around 7 s). Two reduction processes at around -0.22 V and -0.36 V were selected for TNT detection, with linear ranges between 1.0 and 10.0 μM. Moreover, detection limits of 0.52 and 0.66 μM were achieved for both reduction steps. The proposed method was applied to determine TNT in different environmental water samples (tap water, river water, and seawater) without a dilution step (direct analysis). Recovery values between 98 and 106% confirmed the accuracy of the analyses. Additionally, adequate selectivity was achieved even in the presence of other explosives commonly used by military agencies, metallic ions commonly found in water, and also some electroactive camouflage species. Such results indicate that the proposed device is promising to quantify TNT residues in environmental samples, a viable on-site analysis strategy.

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