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Conductive inks with a 'built-in' mechanism that enables sintering at room temperature

机译:导电油墨具有“内置”机制,可在室温下烧结

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At present there is no metallic ink that enables formation of conductive patterns at room temperature by a single printing step. Printing conductive features by metallic nanoparticle-based inks must be followed by sintering while heating to elevated temperatures, thus preventing their utilization on most plastic substrates used in plastic electronics. In this report we present a new silver nanoparticle-based conductive ink, having a built-in sintering mechanism, which is triggered during drying of the printed pattern. The nanoparticles that are stabilized by a polymer undergo self-sintering spontaneously, due to the presence of a destabilizing agent, which comes into action only during drying of the printed pattern. The destabilizing agent, which contains Cl- ions, causes detachment of the anchoring groups of the stabilizer from the nanoparticles' surface and thus enables their coalescence and sintering. It was found that the new metallic ink leads to very high conductivities, by a single printing step: up to 41% of the conductivity of bulk silver was achieved, the highest reported conductivity of a printed pattern that is obtained from nanoparticles at room temperature.
机译:目前,没有金属油墨能够通过单个印刷步骤在室温下形成导电图案。必须先烧结金属纳米粒子基油墨来印刷导电特征,同时加热至高温,从而阻止其在塑料电子产品中使用的大多数塑料基材上得到利用。在此报告中,我们介绍了一种新型的基于银纳米粒子的导电油墨,该油墨具有内置的烧结机制,该机制在印刷图案干燥期间会触发。由于存在去稳定剂,被聚合物稳定的纳米颗粒会自发进行自烧结,该去稳定剂仅在印刷图案干燥期间才起作用。包含Cl-离子的去稳定剂会导致稳定剂的锚定基团从纳米颗粒的表面脱离,从而使其聚结和烧结。已发现,新的金属油墨通过一个印刷步骤即可获得非常高的电导率:达到了块状银电导率的41%,这是在室温下从纳米粒子获得的印刷图案的最高电导率。

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