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Potentials and Challenges in Inkjet Printing Conductive Inks on Textile Materials

机译:纺织材料喷墨印刷导电油墨中的潜力和挑战

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The inkjet printing technique has been rapidly developing for the realization of flexible electronic devices. The radio-frequency identification (RFID), energy harvesting and organic light-emitting diode devices (OLED) has been successfully introduced on flexible substrates such as PET, PDMS and Kapton films. Since the inkjet printing technique is a direct writing process, the benefits include flexible design, low-cost and environmentally friendly. It is also possible to create a high resolution of printed lines. Therefore, this technique is believed to have a great potential for creating conductive patterns on textile substrates, which is an alternative approach to traditional methods that use conductive yarns. However, the challenge is to ensure that the small droplets can penetrate through the thickness of the fabric in order to spread along the threads. Thus, the continuity of deposited droplets is not high enough to achieve low electrical resistance. This paper summarises inkjet printing techniques and also looks for further developments in printing conductive tracks on textile substrates.
机译:用于实现柔性电子设备的喷墨印刷技术已经迅速发展。在柔性基板上成功地引入了射频识别(RFID),能量收集和有机发光二极管器件(OLED),例如PET,PDMS和Kapton薄膜。由于喷墨印刷技术是直接写入过程,因此优势包括灵活的设计,低成本和环保。还可以创建最高分辨率的印刷线。因此,据信这种技术具有在纺织基材上产生导电图案的巨大潜力,这是一种使用导电纱线的传统方法的替代方法。然而,挑战是确保小液滴可以穿透织物的厚度以沿着螺纹传播。因此,沉积液滴的连续性不足以实现低电阻。本文总结了喷墨印刷技术,并寻找纺织基材上印刷导电轨道的进一步发展。

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