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Spectroscopic Ultra-Trace Detection of Nitroaromatic Gas Vapor on Rationally Designed Two-Dimensional Nanoparticle Cluster Arrays

机译:合理设计的二维纳米粒子簇阵列的硝基芳烃蒸气光谱超痕量检测

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Nanoparticle cluster arrays (NCAs) are engineered two-dimensional plasmonic arrays that provide high signal enhancements for critical sensing applications using surface enhanced Raman spectroscopy (SERS). In this work we demonstrate that rationally designed NCAs are capable of detecting ultra-traces of 2,4-dinitrotoluene (DNT) vapor. NCAs functionalized with a thin film of an aqueous NaOH solution facilitated the detection of DNT vapor at a concentration of at least 10 ppt, even in the presence of an excess of potential interferents, including Diesel fuel, fertilizers, and pesticides. Both in the presence and in the absence of this complex background the SERS signal intensity of the NO_(2) stretching mode showed a continuous, concentration dependent response over the entire monitored concentration range (10 ppt-100 ppb). The small size, superb sensitivity, and selectivity, as well as the fast response time of <5 min, make NCAs a valuable photonic sensor platform for ultra-trace nitroaromatic gas vapor detection with potential applications in landmine removal and homeland security.
机译:纳米粒子簇阵列(NCA)是经过工程设计的二维等离子体阵列,可使用表面增强拉曼光谱(SERS)为关键传感应用提供高信号增强。在这项工作中,我们证明了合理设计的NCA能够检测2,4-二硝基甲苯(DNT)蒸气的超痕量。即使是在存在过量的潜在干扰物(包括柴油燃料,化肥和农药)的情况下,用NaOH水溶液薄膜进行功能化的NCAs仍有助于检测浓度至少为10 ppt的DNT蒸气。在有和没有这种复杂背景的情况下,NO_(2)拉伸模式的SERS信号强度在整个监测浓度范围(10 ppt-100 ppb)上均显示出连续的,浓度依赖性的响应。体积小,灵敏度高,选择性好,响应时间短于5分钟,使NCA成为用于超痕量硝基芳族气体蒸气检测的有价值的光子传感器平台,在消除地雷和国土安全方面具有潜在的应用前景。

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