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Ammonia gas sensors based on chemically reduced graphene oxide sheets self-assembled on Au electrodes

机译:基于在Au电极上自组装的化学还原氧化石墨烯片的氨气传感器

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摘要

We present a useful ammonia gas sensor based on chemically reduced graphene oxide (rGO) sheets by self-assembly technique to create conductive networks between parallel Au electrodes. Negative graphene oxide (GO) sheets with large sizes (>10 μm) can be easily electrostatically attracted onto positive Au electrodes modified with cysteamine hydrochloride in aqueous solution. The assembled GO sheets on Au electrodes can be directly reduced into rGO sheets by hydrazine or pyrrole vapor and consequently provide the sensing devices based on self-assembled rGO sheets. Preliminary results, which have been presented on the detection of ammonia (NH3) gas using this facile and scalable fabrication method for practical devices, suggest that pyrrole-vapor-reduced rGO exhibits much better (more than 2.7 times with the concentration of NH3 at 50 ppm) response to NH3 than that of rGO reduced from hydrazine vapor. Furthermore, this novel gas sensor based on rGO reduced from pyrrole shows excellent responsive repeatability to NH3. Overall, the facile electrostatic self-assembly technique in aqueous solution facilitates device fabrication, the resultant self-assembled rGO-based sensing devices, with miniature, low-cost portable characteristics and outstanding sensing performances, which can ensure potential application in gas sensing fields.
机译:我们提出了一种有用的氨气传感器,该传感器基于化学还原氧化石墨烯(rGO)薄板,通过自组装技术在平行的Au电极之间创建导电网络。大尺寸(>10μm)的负氧化石墨烯(GO)片可以很容易地静电吸附到水溶液中用半胱胺盐酸盐修饰的正Au电极上。可以通过肼或吡咯蒸气将在Au电极上组装的GO薄板直接还原为rGO薄板,从而提供基于自组装rGO薄板的传感设备。使用适用于实际设备的这种灵活且可扩展的制造方法检测氨气(NH3)的初步结果表明,吡咯蒸气降低的rGO表现出更好的效果(在NH3浓度为50时,其比2.7倍) ppm)对肼的反应比肼蒸气对rGO的反应要少。此外,基于从吡咯还原的rGO的新型气体传感器显示出对NH3的出色响应重复性。总体而言,简便的水溶液中静电自组装技术可简化设备制造过程,并最终获得基于rGO的自组装传感设备,具有微型,低成本便携式特性和出色的传感性能,可确保在气体传感领域的潜在应用。

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