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首页> 外文期刊>Advances in Natural Sciences: Nanoscience and Nanotechnology >Fabrication of interdigitated electrodes by inkjet printing technology for apllication in ammonia sensing - IOPscience
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Fabrication of interdigitated electrodes by inkjet printing technology for apllication in ammonia sensing - IOPscience

机译:通过喷墨印刷技术制造叉指电极以用于氨气传感-IOPscience

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In this paper interdigitated electrodes for gas sensors were fabricated by inkjet printing technology. Silver electrodes were inkjet printed on Si/SiO2 substrates instead of traditional photolithography method. The inkjet printing parameters to obtain desired dimensions, thickness of the electrodes and distance between the interdigitated electrodes were optimized in this study. The fabricated interdigitated silver electrodes were tested for application in ammonia gas sensors. Conductive polyaniline (PANI) layer was coated on the silver interdigitated electrodes by drop-coating. Ammonia detection of the PANI-coated chips was characterized with a gas measurement system in which humidity and ammonia concentrations were well-controlled. The electrical conductivity of the PANI films coated on the electrodes was measured when the PANI films were exposed to nitrogen and ammonia. The conductivity of the PANI films decreased significantly due to the deprotonation process of PANI upon ammonia expodure. The recovery time was about 15 min by heating up the polymer chip at 60 °C. The results showed that the silver electrodes fabricated by inkjet printing technique could be used as a sensor platform for ammonia detection.
机译:在本文中,通过喷墨印刷技术制造了用于气体传感器的叉指式电极。代替传统的光刻方法,将银电极喷墨印刷在Si / SiO2基板上。在本研究中,对获得所需尺寸,电极厚度和叉指电极之间距离的喷墨打印参数进行了优化。测试了制成的叉指型银电极在氨气传感器中的应用。通过滴涂将导电聚苯胺(PANI)层涂覆在叉指式银电极上。用气体测量系统对PANI涂层芯片的氨气检测进行了表征,其中湿度和氨气浓度得到了很好的控制。当PANI膜暴露于氮气和氨气时,测量涂覆在电极上的PANI膜的电导率。 PANI膜的电导率显着下降,这是由于氨脱出后PANI的去质子过程。通过将聚合物芯片加热到60°C,恢复时间约为15分钟。结果表明,采用喷墨印刷技术制备的银电极可作为氨气检测的传感器平台。

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