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首页> 外文期刊>Analytica chimica acta >Fabrication of L-cysteine-capped CdTe quantum dots based ratiometric fluorescence nanosensor for onsite visual determination of trace TNT explosive
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Fabrication of L-cysteine-capped CdTe quantum dots based ratiometric fluorescence nanosensor for onsite visual determination of trace TNT explosive

机译:L-半胱氨酸封端的CdTe量子点比例荧光纳米传感器的制备,用于现场目测痕量TNT炸药

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摘要

New strategies for onsite determination of trace 2,4,6-trinitrotoluene (TNT) explosives have become a research hotspot for homeland security needs against terrorism and environmental concerns. Herein, we designed a ratiometric fluorescence nanohybrid comprising 3-mercaptopropionic acid-capped green-emitting CdTe quantum dots (gQDs) encapsulated into SiO2 sphere and L-cysteine (Lcys)-capped red-emitting CdTe QDs (rQDs) conjugated onto SiO2 surface. The surface Lcys can be used as not only the stabilizer of the rQDs but also the primary amine provider which can react with TNT to form Meisenheimer complexes. Without any additional surface modification procedure, the fluorescence of rQDs equipped with Lcys was selectively quenched by TNT because electrons of the rQDs transferred to TNT molecules due to the formation of Meisenheimer complexes. Meanwhile, the embedded gQDs always remained constant. Upon exposure to increasing amounts of TNT, the fluorescence of rQDs could be gradually quenched and consequently the logarithm of the dual emission intensity ratios exhibited a good linear negative correlation with TNT concentration over a range of 10 nM-8 mu M with a low detection limit of 3.3 nM. One can perform onsite visual determination of TNT with high resolution because the ratiometric fluorescence nanosensing system exhibited obvious fluorescence color changes. This sensing strategy has been successfully applied in real samples and already integrated in a filter paper-based assay, which enables potential fields use application featuring easy handling and cost-effectiveness. (C) 2016 Elsevier B.V. All rights reserved.
机译:现场确定痕量2,4,6-三硝基甲苯(TNT)炸药的新策略已成为国土安全需求的研究热点,以应对恐怖主义和环境问题。在这里,我们设计了一种比例荧光纳米杂化体,该纳米杂化体包含包裹在SiO2球体内的3-巯基丙酸封端的绿色发射CdTe量子点(gQDs)和与SiO2表面共轭的L-半胱氨酸(Lcys)封端的红色发光CdTe QD(rQDs)。表面Lcys不仅可以用作rQD的稳定剂,还可以用作伯胺提供剂,可以与TNT反应形成Meisenheimer配合物。无需任何其他表面修饰程序,配备了Lcys的rQDs的荧光就会被TNT猝灭,因为rQDs的电子由于形成了迈森海默复合物而转移到TNT分子上。同时,嵌入式gQD始终保持不变。在暴露于增加量的TNT时,rQD的荧光可逐渐淬灭,因此在10 nM-8μM范围内,双重发射强度比的对数与TNT浓度呈良好的线性负相关,且检测限低为3.3 nM。由于比例式荧光纳米传感系统显示出明显的荧光颜色变化,因此可以实现高分辨率的现场目测TNT。该传感策略已成功应用于实际样品中,并且已集成到基于滤纸的测定中,这使潜在的野外应用具有易于处理和成本效益的特点。 (C)2016 Elsevier B.V.保留所有权利。

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