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Ink Jet Printing of Conductive Silver Tracks from Nanoparticle Inks on Mesoporous Substrates

机译:介孔基质上的纳米颗粒油墨的导电银迹线的喷墨印刷

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Conductive tracks are produced by ink jet printing of a commercial silver nanoparticle ink on different substrates. We observed that applying mesoporous coatings on the substrates resulted in metallic conductivity immediately after printing. The influence of the average pore size and some chemical parameters of the coatings were studied, as well as the thermal treatment after printing. We found that using substrates with slightly acidic cationic coating and small pore sizes of about 15 nm resulted in the highest conductivity for the given ink even without any thermal treatment applied. Another crucial parameter found was the smoothness of the surface, which was estimated by the surface gloss. After drying / "sintering" of the printed tracks for 9 min at 100 ℃ in an oven a specific resistance of 13 μΩcm (about eightfold that of bulk silver) could be achieved using a commercially available substrate. This is a significant higher value than recently reported conductivities obtained after heating to much higher temperatures. Additionally, some chemical post treatment of the prints by aqueous solutions can be applied for a further increase in conductivity. Furthermore, samples produced were exposed to "photonic sintering" equipment to assess the potential of this technique for inline post-processing of metallic structures on porous substrates.
机译:导电迹线是通过将商业化的银纳米颗粒油墨喷墨印刷在不同的基材上而产生的。我们观察到,在印刷后立即在基材上施加中孔涂层会产生金属导电性。研究了平均孔径和涂层某些化学参数的影响,以及印刷后的热处理。我们发现,使用带有弱酸性阳离子涂层和约15 nm的小孔径的基材,即使不进行任何热处理,对于给定的油墨也能获得最高的电导率。发现的另一个关键参数是表面的光滑度,其由表面光泽度估计。在烘箱中在100℃下干燥/“烧结”印刷线路9分钟后,使用市售基材可以实现13μΩcm的电阻率(约为块状银的八倍)。这比加热到更高温度后获得的最新电导率要高得多。另外,可以通过水溶液对印刷品进行一些化学后处理,以进一步提高电导率。此外,将产生的样品暴露于“光子烧结”设备中,以评估该技术对多孔基材上的金属结构进行在线后处理的潜力。

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