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Highly sensitive gas-phase explosive detection by luminescent microporous polymer networks

机译:发光微孔聚合物网络用于高灵敏度气相爆炸物检测

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摘要

We propose microporous networks (MPNs) of a light emitting spiro-carbazole based polymer (PSpCz) as luminescent sensor for nitro-aromatic compounds. The MPNs used in this study can be easily synthesized on arbitrarily sized/shaped substrates by simple and low-cost electrochemical deposition. The resulting MPN afford an extremely high specific surface area of 1300 m2/g, more than three orders of magnitude higher than that of the thin films of the respective monomer. We demonstrate, that the luminescence of PSpCz is selectively quenched by nitro-aromatic analytes, e.g. nitrobenzene, 2,4-DNT and TNT. In striking contrast to a control sample based on non-porous spiro-carbazole, which does not show any luminescence quenching upon exposure to TNT at levels of 3 ppm and below, the microporous PSpCz shows a clearly detectable response even at TNT concentrations as low as 5 ppb, clearly demonstrating the advantage of microporous films as luminescent sensors for traces of explosive analytes. This level states the vapor pressure of TNT at room temperature.
机译:我们提出发光螺-咔唑基聚合物(PSpCz)的微孔网络(MPNs)作为硝基-芳香族化合物的发光传感器。通过简单且低成本的电化学沉积,可以轻松地在任意大小/形状的基板上合成本研究中使用的MPN。所得的MPN提供了1300 m 2 / g的极高的比表面积,比相应单体的薄膜的表面积高出三个数量级。我们证明,通过硝基-芳族分析物,例如,PSpCz的发光被选择性淬灭。硝基苯,2,4-DNT和TNT。与基于无孔螺-咔唑的对照样品形成鲜明对比,后者在3%ppm及以下的水平下暴露于TNT时未显示任何发光猝灭,即使在低至TNT浓度下,微孔PSpCz仍显示出明显可检测的响应5 ppb,清楚地证明了微孔膜作为发光传感器的痕量爆炸性分析物的优势。此水平表示室温下TNT的蒸气压。

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