Characterization of graphene-based inkjet printed samples on flexible substrate for wireless sensing applications

M. Akbari, L. Sydänheimo, J. Juuti, J. Vuorinen, L. Ukkonen
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引用次数: 12

Abstract

Inkjet printing is one of the emerging methods for fabrication of electronic devices. The important issue in this area is developing nanomaterial-based inks for different applications such as gas sensors for environmental monitoring. In particular, graphene-based materials have recently gained interest due to their extraordinary properties. However, graphene has hydrophobic nature resulting in poor solubility in the most of the solvents. In order to solve this problem, graphene oxide is mostly used instead of graphene. To retrieve the conductivity, the printed samples are reduced to remove the oxygen containing groups. The major contribution of this paper is focused on the production of conductive graphene-based patterns on the flexible kapton substrate utilizing thermal reduction process. Both printed samples and inks were characterized and analyzed to enhance the quality of printing. The effect of different parameters such as surface modification, annealing condition, thermal reduction atmosphere, setting of inkjet printer, and concentration of ink were investigated. The characterization part includes analysis of the morphology, sheet resistance, conductivity, and viscosity of ink. This work is an important step for future research on the development of wireless graphene-based gas sensors.
无线传感柔性基板上石墨烯喷墨打印样品的表征
喷墨印刷是一种新兴的电子器件制造方法。该领域的重要问题是为不同的应用开发基于纳米材料的油墨,例如用于环境监测的气体传感器。特别是,石墨烯基材料由于其非凡的性能最近引起了人们的兴趣。然而,石墨烯具有疏水性,导致其在大多数溶剂中的溶解度较差。为了解决这个问题,大多采用氧化石墨烯来代替石墨烯。为了恢复电导率,将打印的样品还原以去除含氧基团。本文的主要贡献集中在利用热还原工艺在柔性卡普顿衬底上生产导电石墨烯基图案。对印刷样品和油墨进行了表征和分析,以提高印刷质量。考察了表面改性、退火条件、热还原气氛、喷墨打印机设置、油墨浓度等参数对制备效果的影响。表征部分包括对油墨的形貌、薄片电阻、电导率和粘度的分析。这项工作是未来无线石墨烯气体传感器发展研究的重要一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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