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首页> 外文期刊>Journal of Imaging Science and Technology >Intense Pulsed Light Sintering of an Inkjet Printed Silver Nanoparticle Ink Depending on the Spectral Absorption and Reflection of the Background
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Intense Pulsed Light Sintering of an Inkjet Printed Silver Nanoparticle Ink Depending on the Spectral Absorption and Reflection of the Background

机译:喷墨印刷的银纳米颗粒油墨的强脉冲光烧结取决于背景的光谱吸收和反射

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摘要

The development of novel manufacturing methods for flexible, light weight and cost-efficient electronics has attracted great interest in recent years. The inkjet printing technology is an attractive fabrication process due to its additive, high precision and up-scalable deposition process. One of the key components of printed electronic devices is the conductive track. A major requirement is a desired and device dependent electrical performance induced by an appropriate post treatment process. Here, the novel method of using intense pulsed light (IPL) to convert printed liquid films into solid and functionalized metallic layers has great potential when it comes to fabrication of electronics on thin, flexible and even stretchable polymeric foils. Within this research, the IPL sintering and its dependence on the spectral absorption and reflection of various materials is investigated. A nanoparticle silver ink is inkjet printed on a transparent PET foil. Afterwards, the printed samples are placed at a defined distance from the background inside the photonic sintering equipment and flashed on one hand with various flashing parameters and on the other with changing background materials and colors. Changing the background color influences the reflection and absorption properties of the flashlight; the electrical performance of the IPL processed conductive layers can be drastically changed when such a phenomenon occurs. Highly conductive silver tracks or electrodes can be manufactured on thin and flexible polymeric substrates without damage. (C) 2016 Society for Imaging Science and Technology.
机译:近年来,对于柔性,轻便和经济高效的电子产品的新颖制造方法的开发引起了人们的极大兴趣。喷墨打印技术具有累加,高精度和可扩展的沉积工艺,因此是一种有吸引力的制造工艺。印刷电子设备的关键组件之一是导电轨道。一个主要的要求是通过适当的后处理过程引起的期望的并且取决于装置的电性能。在薄的,柔性的甚至可拉伸的聚合物箔上制造电子产品时,使用强脉冲光(IPL)将印刷的液膜转换成固体和功能化金属层的新颖方法在这里具有巨大的潜力。在这项研究中,对IPL烧结及其对各种材料的光谱吸收和反射的依赖性进行了研究。将纳米粒子银油墨喷墨印刷在透明的PET箔上。然后,将打印的样品放置在距光子烧结设备内的背景一定距离的位置,一方面用各种闪光参数进行闪光,另一方面用变化的背景材料和颜色进行闪光。改变背景颜色会影响手电筒的反射和吸收特性。当发生这种现象时,经过IPL处理的导电层的电性能会发生巨大变化。高导电性的银走线或电极可以在薄而柔软的聚合物基板上制造,而不会造成损坏。 (C)2016年影像科学与技术学会。

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  • 来源
    《Journal of Imaging Science and Technology》 |2016年第4期|040403.1-040403.5|共5页
  • 作者单位

    Tech Univ Chemnitz, Dept Digital Printing & Imaging Technol, Chemnitz, Germany;

    Tech Univ Chemnitz, Dept Digital Printing & Imaging Technol, Chemnitz, Germany;

    Tech Univ Chemnitz, Dept Digital Printing & Imaging Technol, Chemnitz, Germany;

    Tech Univ Chemnitz, Dept Digital Printing & Imaging Technol, Chemnitz, Germany|Fraunhofer Inst Elect Nano Syst ENAS, Printed Funct, Chemnitz, Germany;

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