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Silver nanoparticles ink synthesis for conductive patterns fabrication using inkjet printing technology - IOPscience

机译:使用喷墨印刷技术的银纳米粒子油墨合成,用于导电图案的制造-IOPscience

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In this paper we present silver nanoparticles ink synthesis targeting conductive patterns for micro fabricated devices by inkjet printing technology. The well dispersed nanoparticles ink was composed of silver colloid with an average particle diameter less than 10 nm. These nanoparticles were protected by a capping layer of poly(N-vinylpyrrolidone) (PVP) even at silver concentration of 20 wt%. Stable aqueous inks were formulated by using a combination of solvent and co-solvents and under vigorous stirring. Various factors affecting the adhesion between the ink and the substrate were investigated, such as solvent and co-solvent content. The ink containing 20 wt% silver has a viscosity of about 9.5 cP and a surface tension of 32 to 36 mN m?1 at room temperature, meeting inkjet printer requirements. The ink stored under ambient conditions was stable against aggregation for more than one month. Silver nanoparticles patterns have been successfully printed on various substrates.
机译:在本文中,我们介绍了以喷墨印刷技术为目标的微型制造设备中的导电图案的银纳米粒子油墨合成方法。分散良好的纳米颗粒油墨由平均粒径小于10 nm的银胶体组成。这些纳米颗粒即使在银浓度为20 wt%时也受到聚(N-乙烯基吡咯烷酮)(PVP)覆盖层的保护。通过使用溶剂和助溶剂的组合并在剧烈搅拌下配制稳定的水性油墨。研究了影响油墨与基材之间粘附力的各种因素,例如溶剂和助溶剂的含量。含有20 wt%银的油墨在室温下的粘度约为9.5 cP,表面张力为32至36 mN m?1,满足喷墨打印机的要求。在环境条件下存储的油墨在超过一个月的时间内稳定不凝结。银纳米颗粒图案已成功印刷在各种基材上。

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