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A non-reductive electrochemical sensor for ultrasensitive detection of pM-level TNT

机译:用于PM级TNT的超细静脉检测的非还原电化学传感器

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Most of the current electrochemical sensors for the detection of nitroaromatic explosives directly exploit the reduction of nitro groups at the electrode. In the case of trace analytes, a long pre-accumulation time to increase their adsorption at the modified electrodes is needed, and the sensitivity is greatly limited by the strength of redox signals of target species. The direct approach is particularly not suitable for analyzing weak/reductive trinitramine explosives. Herein, we report a non-reductive electrochemical sensor for the ultrasensitive real-time detection of pM-level trinitrotoluene (TNT). Ultratrace TNT can substantially prevent the reversible redox of PANI ultrathin layers at gold nanoparticles (AuNPs)/carbon nanotubes (CNTs) composite electrode, resulting in the decrease in oxidative peak currents of PANI. The voltammetric response is fast (almost immediate) and is greatly amplified by AuNPs. The detection limit for analyzing TNT is 4 ppt (18 pM). The limit of detection (LOD) and quantification (LOQ) of TNT was calculated to be 1.1 ppt and 3.7 ppt, respectively.
机译:用于检测硝基氨基氨基丙酯的大多数电化学传感器直接利用电极的硝基的减少。在痕量分析物的情况下,需要在改性电极上增加其吸附的长累积时间,灵敏度受到靶物种的氧化还原信号的强度极大的限制。直接方法特别不适合分析弱/还原三硝胺炸药。在此,我们报告了一种非还原电化学传感器,用于对PM级Trinitro甲苯(TNT)的超敏实时检测。 UltraTRace TNT可以基本上防止金纳米颗粒(AUNP)/碳纳米管(CNT)复合电极的PANI超薄层的可逆氧化还原,从而降低了PANI的氧化峰值电流。伏安响应快(几乎立即),并且由AUNPS大大放大。分析TNT的检测限是4 ppt(下午18点)。 TNT的检测极限(LOD)和定量(LOQ)分别计算为1.1 ppt和3.7 ppt。

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