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首页> 外文期刊>Beilstein Journal of Nanotechnology >Study of the correlation between sensing performance and surface morphology of inkjet-printed aqueous graphene-based chemiresistors for NO2 detection
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Study of the correlation between sensing performance and surface morphology of inkjet-printed aqueous graphene-based chemiresistors for NO2 detection

机译:喷墨打印水基石墨烯基化学电阻器NO2检测的传感性能与表面形态之间的相关性研究

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The extremely high sensitivity to the external environment and the high specific surface area, as well as the absence of bulk phenomena that could interfere with the response signal, make graphene highly attractive for the applications in the field of sensing. Among the various methods for producing graphene over large areas, liquid phase exfoliation (LPE) appears to be very promising, especially if combined with inkjet printing (IJP), which offers several advantages, including the selective and controlled deposition of small ink volumes and the versatility of the exploitable inks and substrates. Herein we present a feasibility study of chemiresistive gas sensors inkjet-printed onto paper substrates, in which a LPE graphene suspension dispersed in a water/isopropanol (H2O/IPA) mixture is used as sensing ink. The device performances, in terms of relative conductance variations, upon exposure to NO2 at standard ambient temperature and pressure, are analysed. In addition, we examine the effect of the substrate morphology and, more specifically, of the ink/substrate interaction on the device performances, by comparing the response of different chemiresistors fabricated by dispensing the same suspension also onto Al2O3 and Si/SiO2 substrates and carrying out a supportive atomic force microscopy analysis. The results prove the possibility to produce sensor devices by means of a wholly environmentally friendly, low-cost process that meets the requests coming from the increasing field of paper-based electronics and paving the way towards a flexible, green-by-design mass production.
机译:对外部环境的极高灵敏度和高比表面积,以及不存在会干扰响应信号的大量现象,使得石墨烯在传感领域的应用极具吸引力。在用于大面积生产石墨烯的各种方法中,液相剥落(LPE)似乎非常有前途,尤其是与喷墨印刷(IJP)结合使用时,这种方法具有许多优势,包括选择性和受控地沉积小体积的墨水,以及可利用墨水和基材的多功能性。本文中,我们介绍了喷墨打印在纸质基材上的化学气体传感器的可行性研究,其中分散在水/异丙醇(H2O / IPA)混合物中的LPE石墨烯悬浮液用作感测油墨。分析了在标准环境温度和压力下暴露于NO2时相对电导率变化引起的器件性能。此外,通过比较通过将相同的悬浮液也分配到Al2O3和Si / SiO2基板上并携带相同的悬浮液制成的不同化学电阻的响应,我们研究了基板形态的影响,更具体地说,是油墨/基板相互作用对设备性能的影响。进行支持性原子力显微镜分析。结果证明了通过完全环保,低成本的工艺来生产传感器设备的可能性,该工艺可以满足不断增长的基于纸张的电子产品领域的要求,并为实现灵活的,绿色设计的大规模生产铺平道路。

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