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Implementation of serial amplifying fluorescent polymer arrays for enhanced chemical vapor sensing of landmines

机译:用于增强地雷化学蒸汽感应的连续扩增荧光聚合物阵列的实现

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A sensor (known as Fido) that utilizes amplification of fluorescence quenching as the transduction mechanism for ultra-trace detection of nitroaromatic compounds associated with landmines has been described previously. Previous sensor prototypes utilized a single band of amplifying polymer deployed inside a capillary waveguide to form the sensing element of the detector. A new prototype has been developed that incorporates multiple, discrete bands of different amplifying polymers deployed in a linear array inside the capillary. Vapor-phase samples are introduced into the sensor as a sharp pulse via a gated inlet. As the vapor pulse is swept through the capillary by flow of a carrier gas, the pulse of analyte encounters the bands of polymer sequentially. If the sample contains nitroaromatic explosives, the bands of polymer will respond with a reduction in emission intensity proportional to the mass of analyte in the sample. Because the polymer bands are deployed serially, the analyte pulse does not reach the bands of polymer simultaneously. Hence, a temporal response pattern will be observed as the analyte pulse traverses the length of the capillary. In addition, the intensity of response for each band will vary, producing a ratiometric response. The temporal and ratiometric responses are characteristic of a given analyte, enhancing discrimination of target analytes from potential interferents. This should translate into a reduction in sensor false alarm rates.
机译:已经通过前面描述了利用荧光猝灭的传感器(称为FIDO)作为用于超痕量检测与地雷与地雷相关的硝基芳族化合物的转导机制。以前的传感器原型利用单个扩增聚合物展开在毛细管波导内,形成检测器的传感元件。已经开发了一种新的原型,其包括多个离散的不同放大聚合物,其在毛细管内部的线性阵列中部署。通过门控入口将气相样品引入传感器中作为尖锐的脉冲。随着蒸汽脉冲通过载气流通过毛细管扫过毛细血管,分析物的脉冲顺序地遇到聚合物的带。如果样品含有硝基芳族炸药,则聚合物的带将在降低与样品中分析物的质量成比例的发射强度降低。因为串联部署聚合物带,所以分析物脉冲不会同时到达聚合物的带。因此,当分析物脉冲横穿毛细管的长度时,将观察到时间响应模式。另外,每个频带的响应强度将变化,产生比率的响应。时间和比例反应是给定分析物的特征,增强来自潜在干扰的靶分之分析物的鉴别。这应该转化为传感器误报率的减少。

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