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Inkjet Printing and Sintering of Nano Copper Ink

机译:纳米铜油墨的喷墨印刷与烧结

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An alternative low cost replacement for silver and gold conduct ve inks is of great interest to the printed electronics industry Nano particle copper inks and silver coated nano copper inks an some of the alternative materials being tested for use, especially in applications where low temperature flexible substrates are favored. Although the inkjettability of nano copper ink influence on print quality has been reported, information regarding the relationship between ink film thickness and energy required for sintering by intensive pulse light is not yet understood. In this study, an inkjettable nano copper ink was printed on PET (PolyEthyleneTerepthalate) and glass and the samples were sintered using bursts of high intensity pulsed light. The amount of energy c pplied determined the degree of sintering among particles. The greuter the number of sintered nanoparticles, the higher is the conductvity of the printed traces. A comparison of energy levels requirec for sintering on glass and PET in relationship to ink film thicknes is reported and the thermal contribution of the substrate to the processing energy requirements of this ink is revealed.
机译:替代银和金导电油墨的低成本替代方法对印刷电子行业非常感兴趣纳米粒子铜油墨和涂银的纳米铜油墨是一些正在测试使用的替代材料,特别是在低温柔性基材的应用中受到青睐。尽管已经报道了纳米铜墨的可喷墨性对印刷质量的影响,但是关于墨膜厚度与通过强脉冲光进行烧结所需的能量之间的关系的信息尚未被理解。在这项研究中,一种可喷墨的纳米铜油墨被印刷在PET(聚对苯二甲酸乙二酯)和玻璃上,并使用高强度脉冲光突发烧结样品。所施加的能量c决定了颗粒之间的烧结程度。烧结的纳米颗粒的数量越多,印刷迹线的电导率越高。报告了在玻璃和PET上进行烧结所需的能级与墨膜厚度之间的关系的比较,并揭示了基材对这种墨的加工能的热贡献。

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