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Investigation on high speed laser printing of silver nanoparticle inks on flexible substrates

机译:柔性基材上银纳米粒子油墨的高速激光印刷研究

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摘要

The ever-increasing demand for more efficient, cost- and time-effective electronics required in production-grade technology, impels the research in the field of printed electronics. Laser-induced forward transfer (LIFT) technique meets the requirements for precise deposition and high resolution components, however further research has to be conducted in order to improve the process' speed and reproducibility. In this work, laser printing of silver (Ag) nanoparticle lines on PEN substrate at high repetition rates (10-40 kHz) is introduced and an investigation on the factors that affect the printing results, including the experimental setup's parameters and inks' rheological characteristics, is conducted. Specifically, a high-speed imaging setup is employed in order to study the liquid bubble formation and jet expansion, for four Ag nanoparticle inks of different viscosities and four different repetition rates. At the same time, different values of donor-receiver distance and scanning step are applied, in order to succeed optimum lines. The results indicate that, for high repetition rates, best quality lines derive from high viscosity inks when the distance between the donor and the receiver is relatively small.
机译:不断增加对生产级技术所需的更有效,成本和有效的电子产品的需求,推动了印刷电子产品领域的研究。激光诱导的前进转印(提升)技术满足精确沉积和高分辨率组件的要求,但必须进行进一步的研究以提高过程的速度和再现性。在这项工作中,介绍了在高重复率(10-40kHz)的笔衬底上的Silver(Ag)纳米粒子线的激光印刷,并对影响印刷结果的因素进行调查,包括实验设置的参数和油墨的流变特征,进行。具体地,采用高速成像设置以研究不同粘度和四种不同重复率的四个Ag纳米粒子油墨的液泡形成和喷射膨胀。同时,施加不同的施主接收器距离和扫描步骤的值,以便成功。结果表明,对于高重复速率,当施主和接收器之间的距离相对较小时,最佳质量线从高粘度油墨导出。

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