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L-cysteine-capped CdTe QD-based sensor for simple and selective detection of trinitrotoluene

机译:基于L-半胱氨酸的CdTe QD传感器,用于简单,选择性地检测三硝基甲苯

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摘要

Trinitrotoluene, usually known as TNT, is a kind of chemical explosive with hazardous and toxic effects on the environment and human health. National and societal security concerns have dictated an increasing need for the analytical detection of TNT with rapidity, high sensitivity and low cost. This work demonstrates a novel method using L-cysteine-capped CdTe quantum dots (QDs) to assay TNT, based on the formation of a Meisenheimer complex between TNT and cysteine. The fluorescence (FL) of quantum dots quench because electrons of the QDs transfer to the TNT molecules via the formation of a Meisenheimer complex. TNT can be detected with a low detection limit of 1.1 nM. Studies on the selectivity of this method show that only TNT can generate an intense signal response. The synthesized QDs are excellent nanomaterials for TNT detection. In addition, TNT in soil samples is also analyzed by the proposed method.
机译:三硝基甲苯,通常称为TNT,是一种化学炸药,对环境和人体健康具有危险和毒性作用。出于国家和社会安全的考虑,对以快速,高灵敏度和低成本进行TNT分析检测的需求日益增长。这项工作展示了一种基于L-半胱氨酸封端的CdTe量子点(QD)分析TNT的新方法,该方法基于TNT和半胱氨酸之间的Meisenheimer配合物的形成。量子点的荧光(FL)猝灭,因为QD的电子通过迈森海默络合物的形成转移到TNT分子。可以以1.1 nM的低检测限检测TNT。对这种方法的选择性的研究表明,只有TNT才能产生强烈的信号响应。合成的量子点是用于TNT检测的优秀纳米材料。此外,该方法还可以分析土壤样品中的TNT。

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