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Hand-Held Femtogram Detection of Hazardous Picric Acid with 2 Hydrophobic Ag Nanopillar SERS Substrates and Mechanism of 3 Elasto-Capillarity

机译:2种疏水性ag纳米柱sERs基底手持式Femtogram检测危险的苦味酸及3弹性毛细管作用机理

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摘要

Picric acid (PA) is a severe environmental and security risk due to its unstable, toxic, and explosive properties. It is also challenging to detect in trace amounts and in situ because of its highly acidic and anionic character. Here, we assess sensing of PA under nonlaboratory conditions using surface-enhanced Raman scattering (SERS) silver nanopillar substrates and hand-held Raman spectroscopy equipment. The advancing elasto-capillarity effects are explained by molecular dynamics simulations. We obtain a SERS PA detection limit on the order of 20 ppt, corresponding attomole amounts, which together with the simple analysis methodology demonstrates that the presented approach is highly competitive for ultrasensitive analysis in the field.
机译:苦味酸(PA)由于其不稳定,有毒和易爆的特性而具有严重的环境和安全风险。由于其具有高酸性和阴离子特性,因此很难进行痕量和原位检测。在这里,我们使用表面增强拉曼散射(SERS)银纳米柱基板和手持式拉曼光谱仪在非实验室条件下评估PA的感测。前进的弹性-毛细作用通过分子动力学模拟解释。我们获得的SERS PA检出限为20 ppt的量级,相应的原子量,这与简单的分析方法一起表明,所提出的方法在该领域的超灵敏分析具有很高的竞争力。

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