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The response comparison of a hydrogen-bond acidic polymer to sarin, soman and dimethyl methyl phosphonate based on a surface acoustic wave sensor

机译:基于声表面波传感器的氢键酸性聚合物对沙林蛋白,梭曼和二甲基甲基膦酸酯的响应比较

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摘要

A hydrogen-bond acidic (HBA) polymer, poly{methyl[3-(2-hydroxyl, 4,6-bistrifluorornethyl)phenyl] propylsiloxane}(DKAP), was coated on a 434 MHz surface acoustic wave (SAW) device, and subsequently tested against sarin (GB) and soman (GD) vapour along with dimethyl methyl phosphonate (DMMP) at concentrations below 10 mg m~(-3). The direct detection of GB and GD in the sub mg m~(-3) range, indicated the high sensitivity of the sensor, and was demonstrated by the corresponding sensor which showed high reproducibility as well. However, the response of the sensor to the real agents was relatively smaller and slower than to the simulant DMMP. Towards the real agents, the time to reach an adsorption equilibrium was considerable (~16 min) and a time-dependent linear response was observed in the initial >3 min for both the adsorption and the desorption processes. The sensor was also compared with other HBA polymers coated SAW sensors in terms of response characteristics, with emphasis on the kinetic response behaviour. The slow adsorption and desorption property of the DKAP sensor towards the real chemical agents was attributed to the effect of the size of the analytes and to the strength of hydrogen-bonding, respectively.
机译:将氢键酸性(HBA)聚合物,聚{甲基[3-(2-羟基,4,6-双三氟甲基乙基)苯基]丙基硅氧烷}(DKAP)涂覆在434 MHz声表面波(SAW)器件上,并且随后针对浓度低于10 mg m〜(-3)的沙林(GB)和梭曼(GD)蒸气以及二甲基膦酸二甲酯(DMMP)进行了测试。直接检测亚mg m〜(-3)范围内的GB和GD,表明该传感器具有很高的灵敏度,并通过相应的传感器也得到了证实,该传感器也具有很高的重现性。但是,传感器对真实代理的响应比对模拟DMMP的响应相对较小且较慢。对于真正的试剂,达到吸附平衡的时间相当长(约16分钟),并且在吸附和解吸过程的最初> 3分钟内观察到时间相关的线性响应。该传感器在响应特性方面也与其他HBA聚合物涂层的SAW传感器进行了比较,重点在于动力学响应行为。 DKAP传感器对实际化学试剂的缓慢吸附和解吸特性分别归因于分析物尺寸的影响和氢键的强度。

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