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Comparative Study of Inkjet-Printed Silver Conductive Traces With Thermal and Electrical Sintering

机译:热和电烧结喷墨印刷的银导电迹线的比较研究

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摘要

Thermal sintering has traditionally been the most popular sintering method to enhance conductivity after the printing process in the manufacturing of printed electronics. Nevertheless, in recent years, there has been a growing interest in electrical sintering as an alternative method to overcome some of the limitations of thermal curing. This paper makes a comparative study of both sintering methods in terms of surface morphology, electrical dc conductance, and radiofrequency performance for different applied voltage waveforms. To this end, microstrip transmission lines have been inkjet-printed using nanoparticle-based silver ink on flexible polyimide substrate. The traces have been tested under different sintering conditions, achieving electrical sintering resistivity values only 2.3 times higher than that of bulk silver. This implies a 62% reduction in comparison with the best resistivity value achieved using thermal sintering in our samples. The main novelty of this contribution lies in the analysis of RF behavior as a function of electrical sintering conditions. Lower resistivities have been achieved with slower voltage ramps or allowing higher density current during sintering. It has also been proved that electrically sintered lines have similar RF performance than high-temperature thermally sintered lines in terms of insertion losses, regardless of their very different surface topology. Therefore, we can take advantage of the benefits that electrical sintering offers over thermal sintering regarding significant shorter sintering times maintaining suitable RF performance.
机译:传统上,热烧结是在制造印刷电子产品的印刷过程之后提高导电性的最流行的烧结方法。然而,近年来,人们对电烧结作为克服热固化的某些局限性的替代方法越来越感兴趣。本文对两种烧结方法的表面形态,直流电导率和不同施加电压波形的射频性能进行了比较研究。为此,已经使用基于纳米颗粒的银油墨在柔性聚酰亚胺基板上喷墨印刷了微带传输线。痕迹已经在不同的烧结条件下进行了测试,获得的电烧结电阻率值仅比块状银高2.3倍。与在我们的样品中使用热烧结获得的最佳电阻率值相比,这意味着减少了62%。这种贡献的主要新颖之处在于对RF行为作为电烧结条件的函数的分析。通过较低的电压斜率或在烧结过程中允许较高的密度电流,可以实现较低的电阻率。还已经证明,就插入损耗而言,电烧结线具有与高温热烧结线相似的RF性能,而无论它们的表面拓扑如何非常不同。因此,我们可以充分利用电烧结优于热烧结的优势,因为烧结时间短得多,可保持合适的RF性能。

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