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Ag-graphene hybrid conductive ink for writing electronics

机译:用于电子书写的Ag-石墨烯混合导电油墨

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摘要

With the aim of preparing a method for the writing of electronics on paper by the use of common commercial rollerball pens loaded with conductive ink, hybrid conductive ink composed of Ag nanoparticles (15 wt%) and graphene-Ag composite nanosheets (0.15 wt%) formed by depositing Ag nanoparticles (~10 nm) onto graphene sheets was prepared for the first time. Owing to the electrical pathway effect of graphene and the decreased contact resistance of graphene junctions by depositing Ag nanoparticles (NPs) onto graphene sheets, the concentration of Ag NPs was significantly reduced while maintaining high conductivity at a curing temperature of 100 °C. A typical resistivity value measured was 1:9 × 10~(-7) Ω m, which is 12 times the value for bulk silver. Even over thousands of bending cycles or rolling, the resistance values of writing tracks only increase slightly. The stability and flexibility of the writing circuits are good, demonstrating the promising future of this hybrid ink and direct writing method.
机译:为了制备一种使用装有导电油墨,由Ag纳米颗粒(15 wt%)和石墨烯-Ag复合纳米片(0.15 wt%)组成的混合导电油墨的普通商用滚珠笔在纸上书写电子设备的方法首次制备了通过将Ag纳米颗粒(〜10 nm)沉积到石墨烯片上而形成的纳米粒子。由于石墨烯的电通路效应和通过将Ag纳米颗粒(NPs)沉积到石墨烯片上而降低了石墨烯结的接触电阻,Ag NPs的浓度显着降低,同时在100°C的固化温度下保持高电导率。测得的典型电阻率值为1:9×10〜(-7)Ωm,是大块银的电阻率的12倍。即使经过数千次弯曲或滚动,写入轨迹的电阻值也只会略有增加。书写电路的稳定性和灵活性很好,证明了这种混合墨水和直接书写方法的前景广阔。

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