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Unambiguous detection of nitrated explosive vapours by fluorescence quenching of dendrimer films

机译:通过树枝状聚合物膜的荧光淬灭明确检测硝化的爆炸性蒸气

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摘要

Unambiguous and selective standoff (non-contact) infield detection of nitro-containing explosives and taggants is an important goal but difficult to achieve with standard analytical techniques. Oxidative fluorescence quenching is emerging as a high sensitivity method for detecting such materials but is prone to false positives-everyday items such as perfumes elicit similar responses. Here we report thin films of light-emitting dendrimers that detect vapours of explosives and taggants selectively-fluorescence quenching is not observed for a range of common interferents. Using a combination of neutron reflectometry, quartz crystal microbalance and photophysical measurements we show that the origin of the selectivity is primarily electronic and not the diffusion kinetics of the analyte or its distribution in the film. The results are a major advance in the development of sensing materials for the standoff detection of nitro-based explosive vapours, and deliver significant insights into the physical processes that govern the sensing efficacy.
机译:对含硝基炸药和标签剂进行明确,选择性的对峙(非接触式)现场探测是一个重要目标,但采用标准分析技术很难实现。氧化荧光猝灭作为一种检测此类物质的高灵敏度方法正在兴起,但易于产生假阳性现象,日常物品(例如香水)会引起类似的反应。在这里,我们报道了选择性检测爆炸物和标记剂蒸气的发光树枝状聚合物的薄膜-对于一系列常见的干扰物,未观察到荧光猝灭。使用中子反射法,石英晶体微量天平和光物理测量相结合,我们表明选择性的起源主要是电子的,而不是分析物的扩散动力学或其在膜中的分布。该结果是用于隔离检测基于硝基的爆炸性蒸气的传感材料的一项重大进展,并为控制传感功效的物理过程提供了重要见识。

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