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Standoff detection of nitrotoluenes using 213-nm amplified spontaneous emission from nitric oxide

机译:使用213 nm放大的自发一氧化氮自发检测硝基甲苯

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A method of standoff detection based on the observation of laser-induced fluorescence–amplified spontaneous emission (LIF-ASE) is described. LIF-ASE generates uniaxial intensity distributions of the observed fluorescence with the majority of intensity propagating along the excitation axis in both the forward and backward directions. The detection of bulk vapor at significant standoff distances is readily achieved. This method was used to detect NO directly and as a photoproduct after 213-nm excitation of 2-, 3-, and 4-nitrotoluene. The NO LIF-ASE spectra were studied as a function of buffer gas. These studies showed that the emission from different vibrational states was dependent upon the buffer gas used, suggesting that the populations of vibrational states were influenced by the environment. A similar sensitivity of the vibrational populations was observed when the different nitroaromatic precursors were used in nitrogen buffer gas. Such sensitivity to environmental influences can be used to distinguish among the different nitroaromatic precursors and facilitate the identification of the bulk vapor of these analytes.
机译:描述了一种基于激光诱导的荧光放大自发发射(LIF-ASE)的对峙检测方法。 LIF-ASE生成观察到的荧光的单轴强度分布,其中大多数强度沿激励轴在正向和反向传播。易于实现在远距离处的散装蒸气检测。该方法用于直接检测NO,并在213 nm激发2-,3-和4-硝基甲苯后作为光产物检测NO。研究了NO LIF-ASE光谱与缓冲气体的关系。这些研究表明,不同振动状态的排放取决于所用的缓冲气体,这表明振动状态的数量受环境的影响。当在氮气缓冲气体中使用不同的硝基芳族前体时,观察到了类似的振动种群敏感性。这种对环境影响的敏感性可用于区分不同的硝基芳族前体,并有助于鉴定这些分析物的总蒸气。

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