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首页> 外文期刊>Metals and Materials International >Effects of Atmospheric Pressure Plasma Surface Treatments on the Patternability and Electrical Property of Screen-Printed Ag Nanopaste
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Effects of Atmospheric Pressure Plasma Surface Treatments on the Patternability and Electrical Property of Screen-Printed Ag Nanopaste

机译:大气压等离子表面处理对丝网印刷Ag纳米膏可图形化和电性能的影响

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We examined the effect of surface treatment using atmospheric pressure plasma on the patternability of screen-printed Ag nanopaste in an attempt to fabricate the ideal patterned shape. We also evaluated the electrical property of conductive circuit according to the kinds and degree of treatments. In hydrophobic treatment, the contact angle was up to 108.94°. In hydrophilic treatment, the contact angle was around 20. The hydrophobic and hydrophilic treatments affected the characteristics of the printed Ag pattern. With the hydrophobic treatment, the thickness of the patterns increased as the treatment time increased but decreased with the hydrophilic treatment. For the electrical property, excessive surface treatment of either treatment increased the insertion losses as compared with a sputtered pattern on a non-treated surface. We confirmed that electrical property and patternability in direct printed conductive circuits could be improved by properly controlled APP treatment.
机译:我们检查了使用大气压等离子体进行的表面处理对丝网印刷Ag纳米糊剂可图案化的影响,以试图制造理想的图案形状。我们还根据处理的种类和程度评估了导电电路的电性能。在疏水处理中,接触角高达108.94°。在亲水处理中,接触角约为20°。疏水和亲水处理影响印刷的Ag图案的特性。通过疏水处理,图案的厚度随着处理时间的增加而增加,但是随着亲水处理而减小。对于电性能,与未处理表面上的溅射图案相比,任何一种处理方法的过度表面处理都会增加插入损耗。我们证实,通过适当控制APP的处理,可以改善直接印刷导电电路中的电性能和可图形性。

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