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Gold nanoparticle ink suitable for electric-conductive pattern fabrication using in ink-jet printing technology

机译:金纳米粒子油墨,适用于喷墨印刷技术中的导电图案制造

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In this paper we presented a novel water-based nanoparticle printing ink which can easily be used in producing electric-conductive patterns for the microfabrication and microelectronic devices by commercial printers. The well-dispersed nanoparticle ink was composed of metallic colloids which had a gold core less than 5 nm in diameter and were protected by two overlapped layers of polymers, poly(Nvinylpyrrolidone) (PVP) and acrylic resin (AR). The double layer protected gold nanoparticle (AuNP) ink was stable against aggregation for more than 1 year even at gold concentration higher than 20%. Viscosity of as-prepared ink was similar to the commercial inks which could be used in producing continuous and smooth lines 10m in width and could be printed on various substrates. It has been found that the obtained gold patterns after sintered at 500 C for 3 h would convert to electrical conductive ones. The density of metallic particles as well as the conductivity of patterns can be controlled by mediating the number of printing layers and the conditions of sintering process. A 50-layer printed line obtained in our experiment showed apparent conductivity of 8.0×104 Scm1 which was near to the conductivity value of the bulk gold metal.
机译:在本文中,我们介绍了一种新颖的水基纳米颗粒印刷油墨,可轻松用于通过商业打印机为微细加工和微电子设备生产导电图案。分散良好的纳米颗粒油墨由金直径小于5 nm的金属胶体组成,并由两层交叠的聚合物(聚乙烯吡咯烷酮)(PVP)和丙烯酸树脂(AR)保护。即使金浓度高于20%,双层保护的金纳米粒子(AuNP)油墨也可以防止聚集超过1年。所制备的油墨的粘度类似于可用于生产宽度为10m的连续且平滑的线条并可以印刷在各种基材上的商业油墨。已经发现,在500℃下烧结3小时后,所获得的金图案将转变为导电图案。可以通过介导印刷层的数量和烧结工艺的条件来控制金属颗粒的密度以及图案的导电性。在我们的实验中获得的50层印刷线的表观电导率为8.0×104 Scm1,接近块状金金属的电导率值。

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