Evaluation of printed interdigital electrodes array for chemo-resistive gas sensor application

V. Povolny, A. Laposa, J. Kroutil, J. Voves, M. Davydova, P. Hazdra
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Abstract

In this article, we present the design and preparation of a platform for a gas sensor application based on the ink print of silver nanoparticles on flexible substrates. The Inkjet printing allows localized deposition of ink at low temperatures on a large area and can be used for the deposition of both conductive and dielectric materials. The printed platform consists of four interdigital electrodes (IDE), and connector pads printed with silver ink and sintered with an intense pulse light (IPL). The dielectric ink printed around the IDE structures protects the connection pathways and defines the sensing area. The multilayer structure was printed on polyethylene terephthalate (PET) and polyimide (PI) substrates. Before printing, the plasma treatment of the surface of the polyimide is necessary. Three combinations of electrodes with various widths were designed and the structures were printed with three various resolutions to verify the printability on the used combination of substrate and ink. Bending tests, that show the flexibility of printed structures, were performed as well.
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印刷数字间电极阵列在化学电阻式气体传感器中的应用评价
在这篇文章中,我们提出了一个基于银纳米颗粒在柔性基材上的油墨印刷的气体传感器应用平台的设计和制备。喷墨打印允许在低温下大面积局部沉积油墨,可用于导电和介电材料的沉积。印刷平台由四个数字间电极(IDE)和用银墨水印刷并用强脉冲光(IPL)烧结的连接器垫组成。在IDE结构周围印刷的介电油墨保护连接通路并定义感应区域。在聚对苯二甲酸乙二醇酯(PET)和聚酰亚胺(PI)衬底上印刷多层结构。在印刷前,对聚酰亚胺表面进行等离子处理是必要的。设计了三种不同宽度的电极组合,并以三种不同的分辨率印刷结构,以验证所使用的基材和油墨组合的印刷性。弯曲测试,显示打印结构的灵活性,也进行了。
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