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Inkjet-Printed Silver Nanoparticle Paper Detects Airborne Species from Crystalline Explosives and Their Ultratrace Residues in Open Environment

机译:喷墨印刷的银纳米颗粒纸可在开放环境中检测结晶炸药及其超痕量残留物中的空气传播物种

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An electronic nose can detect highly volatile chemicals in foods, drugs, and environments, but it is still very much a challenge to detect the odors from crystalline compounds (e.g., solid explosives) with a low vapor pressure using the present chemosensing techniques in such way as a dog's olfactory system can do. Here, we inkjet printed silver nanoparticles (AgNPs) on cellulose paper and established a Raman spectroscopic approach to detect the odors of explosive trinitrotoluene (TNT) crystals and residues in the open environment. The layer-by-layer printed AgNP paper was modified with p-aminobenzenethiol (PABT) for efficiently collecting airborne TNT via a charge-transfer reaction and for greatly enhancing the Raman scattering of PABT by multiple spectral resonances. Thus, a Raman switch concept by the Raman readout of PABT for the detection of TNT was proposed. The AgNPs paper at different sites exhibited a highly uniform sensitivity to TNT due to the layer-by-layer printing, and the sensitive limit could reach 1.6 × 10~(-17) g/cm~2 TNT. Experimentally, upon applying a beam of near-infrared low-energy laser to slightly heat (but not destruct) TNT crystals, the resulting airborne TNT in the open environment was probed at the height of 5 cm, in which the concentration of airborne species was lower than 10 ppt by a theoretical analysis. Similarly, the odors from 1.4 ppm TNT in soil and 7.2, 2.9, and 5.7 ng/cm~2 TNT on clothing, leather, and envelope, respectively, were also quickly sensed for 2 s without destoying these inspected objects.
机译:电子鼻可以检测食物,药物和环境中的高挥发性化学物质,但是以这种方式使用当前的化学传感技术检测具有低蒸气压的结晶化合物(例如固体炸药)的气味仍然是很大的挑战。就像狗的嗅觉系统一样在这里,我们将纤维素纳米纸喷墨印刷银纳米颗粒(AgNPs),并建立了拉曼光谱方法来检测开放环境中爆炸性三硝基甲苯(TNT)晶体和残留物的气味。用对氨基苯硫酚(PABT)修饰了逐层印刷的AgNP纸,以通过电荷转移反应有效收集机载TNT,并通过多次光谱共振大大增强PABT的拉曼散射。因此,提出了通过PABT的拉曼读出的拉曼开关概念来检测TNT。 AgNPs纸由于逐层打印而对TNT表现出高度均匀的感光度,感光度极限可达1.6×10〜(-17)g / cm〜2 TNT。实验上,在将近红外低能激光束稍微加热(但不破坏)TNT晶体后,在5 cm的高度探测了在开放环境中形成的空中TNT,其中空中物种的浓度为根据理论分析,低于10 ppt。同样,在不破坏这些被检物的情况下,也能在2 s内快速检测到土壤中1.4 ppm TNT和衣物,皮革和信封上7.2、2.9和5.7 ng / cm〜2 TNT的气味。

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