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Nanocomposite based flexible ultrasensitive resistive gas sensor for chemical reactions studies

机译:基于纳米复合材料的柔性超声电阻气体传感器,用于化学反应研究

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Room temperature operation, low detection limit and fast response time are highly desirable for a wide range of gas sensing applications. However, the available gas sensors suffer mainly from high temperature operation or external stimulation for response/recovery. Here, we report an ultrasensitive-flexible-silver-nanoparticle based nanocomposite resistive sensor for ammonia detection and established the sensing mechanism. We show that the nanocomposite can detect ammonia as low as 500 parts-per-trillion at room temperature in a minute time. Furthermore, the evolution of ammonia from different chemical reactions has been demonstrated using the nanocomposite sensor as an example. Our results demonstrate the proof-of-concept for the new detector to be used in several applications including homeland security, environmental pollution and leak detection in research laboratories and many others.
机译:室温操作,对于各种气体传感应用,非常需要低检测极限和快速响应时间。然而,可用的气体传感器主要来自高温操作或外部刺激以进行响应/恢复。在这里,我们报告了一种用于氨检测的超敏感柔性银纳米粒子基纳米复合材料电阻传感器,并建立了传感机制。我们表明,在一分钟的时间内,纳米复合材料可以在室温下检测氨低至500份每万亿份。此外,使用纳米复合材料传感器作为示例,已经证明了来自不同化学反应的氨的进化。我们的结果展示了用于新探测器的概念证明,用于在包括国土安全,环境污染和研究实验室的泄漏检测,以及许多其他应用中使用的概念。

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