Investigation of the effect of speed and pressure on conductivity in inkjet printed electronic devices

Arif Ozcan, Emine Arman Kandirmaz, Serdem Coskun
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Abstract

We can define printed electronics as the application of printing on a material by means of semiconductor, dielectric and electronic components. This process basically takes place by adding materials that will provide conductivity properties into the printing inks. In addition to printing with traditional printing systems, drop-on demand inkjet printing provides an important advantage in this field thanks to its non-contact and digital patterning capabilities. Therefore, the demand for inkjet printing printable inks based on high-performance electronics is also increasing to expand the scope of possible applications for printed electronics. In recent years, inkjet printing technology has become more and more popular due to its use in various applications such as photovoltaic cells, light-emitting diodes (LED), organic thin-thin transistors, displays, radio frequency identification devices (RFID), smart clothing and sensors. For these applications, the unique feature of inkjet printing technology is that it can print on a wide range of materials and is a digital, contactless and plateless system. We can count other advantages of this technology as low cost and savings from waste. These properties make the inkjet printing technique particularly suitable for printing conductive patterns on a variety of flexible substrates in the manufacture of electronic circuits or devices. The electrical conductivity on the printed material may vary depending on the substrate, printing speed and pressure. For this purpose, a specially prepared test scale with lines of different thicknesses was printed on the polyethylene film material with BENTSAI BT-HH6105B1 Portable Handheld Mobile inkjet printing machine. The effect of machine speed and pressure values on conductivity was observed in the prints made with silver-based conductive inks. As a result, it was concluded that the conductivity value increased as the printing pressure increased at constant speed, and on the other hand, the conductivity value increased as the printing speed decreased when the pressure was fixed.
速度和压力对喷墨印刷电子器件电导率影响的研究
我们可以将印刷电子学定义为通过半导体、电介质和电子元件在材料上进行印刷的应用。这个过程基本上是通过在印刷油墨中添加具有导电性的材料来实现的。除了传统印刷系统外,随需应变喷墨印刷由于其非接触和数字图案功能,在该领域提供了一个重要的优势。因此,对基于高性能电子产品的喷墨印刷可印刷油墨的需求也在不断增加,以扩大印刷电子产品的可能应用范围。近年来,喷墨打印技术因其在光伏电池、发光二极管(LED)、有机超薄晶体管、显示器、射频识别设备(RFID)、智能服装和传感器等各种应用中的应用而越来越受欢迎。对于这些应用,喷墨打印技术的独特之处在于它可以在广泛的材料上进行打印,并且是一种数字化,非接触式和无板系统。这项技术的其他优点还包括低成本和节约废物。这些特性使得喷墨印刷技术特别适合在制造电子电路或设备的各种柔性基板上印刷导电图案。印刷材料上的电导率可能因承印物、印刷速度和压力而异。为此,利用BENTSAI BT-HH6105B1便携式手持式移动喷墨印刷机在聚乙烯薄膜材料上打印专门制备的具有不同厚度线条的测试尺。考察了机器转速和压力值对银基导电油墨印品导电性的影响。结果表明,在恒定速度下,随着印刷压力的增大,电导率值增大;而在一定压力下,随着印刷速度的减小,电导率值增大。
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