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A study on the relationship between print-ability and flash light sinter-ability of Cu nano/micro-ink for printed electronics

机译:印刷电子用铜纳米/微油墨的印刷性与闪光烧结性之间关系的研究

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摘要

In this study, the effect of rheological properties of Cu nano/micro (NP/MP)-inks with various amounts of dispersant on the print-ability and sinter-ability for flash light sintering was investigated. The rheological properties such as viscosity, viscoelasticity and thixotropic index of Cu NP/MP-inks were measured using a rheometer. The fabricated Cu NP/MP-inks were printed on polyimide substrate using a screen printing method. The 3D profile of printed Cu NP/MP-ink pattern was measured using surface profiler. In order to sinter the printed Cu NP/MP-inks, flash light sintering technique was employed. The flash light irradiation conditions (pulse power, pulse number, on-time, and off-time) were optimized to obtain the high sintering characteristic of Cu NP/MP-inks. In order to characterize the microstructures and transformation crystal phase of the sintered Cu NP/MP-inks, scanning electron microscopy, focused ion-beam and X-ray diffraction analysis were performed. From the results, the optimal sintered Cu NP/MP-ink film had a 6.16 mu Omega.cm resistivity and 5B level of adhesion strength.
机译:在这项研究中,研究了具有各种分散剂的铜纳米/微米(NP / MP)油墨的流变性质对闪光烧结的印刷性能和烧结性能的影响。使用流变仪测量Cu NP / MP油墨的流变特性,例如粘度,粘弹性和触变指数。使用丝网印刷方法将制造的Cu NP / MP油墨印刷在聚酰亚胺基板上。使用表面轮廓仪测量印刷的Cu NP / MP油墨图案的3D轮廓。为了烧结印刷的Cu NP / MP油墨,采用了闪光烧结技术。优化了闪光灯的辐照条件(脉冲功率,脉冲数,接通时间和断开时间),以获得Cu NP / MP油墨的高烧结特性。为了表征烧结的Cu NP / MP油墨的微观结构和相变相,进行了扫描电子显微镜,聚焦离子束和X射线衍射分析。由结果可知,最佳的Cu NP / MP-Cu烧结墨膜的电阻率为6.16μΩ·cm,粘附强度为5B。

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