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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >High conductivity and transparency of graphene-based conductive ink: Prepared from a multi-component synergistic stabilization method
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High conductivity and transparency of graphene-based conductive ink: Prepared from a multi-component synergistic stabilization method

机译:石墨烯的导电油墨的高电导率和透明度:由多组分协同稳定方法制备

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摘要

Graphene-based conductive ink has been widely applied to printed electronics, which nevertheless faces several challenges, e.g., dispersion and stability of graphene flakes and ideal compromise between conductivity and transparency. This work reveals a multi-component synergistic stabilization method towards a well-dispersed and stable graphene-based conductive ink with high conductivity and transparency. Commercially available graphene (< 10 layers) material (KNG (R)-G2) was selected and ethanol/water (2/1, v/v) was used as co-solvent to disperse the graphene flakes. Multi-walled carbon nanotubes, providing network for attaching of graphene through pi-pi force and amphipathic polymer polyvinylpyrrolidone, acting as a surfactant were indispensable to stabilize conductive ink. The as-prepared graphene-based ink can be deposited on different substrates through drop-casting, spin-coating and inkjet-printing and the sheet resistance of the deposited films was tested as low as 180 Omega/sq with the optical transmittance of 90%. The method reported in this work is potential for industrial production toward a graphene composite conductive ink with high conductivity and transparency for printing electronic applications.
机译:基于石墨烯的导电油墨已广泛应用于印刷电子器件,然而面临若干挑战,例如石墨烯片的分散和稳定性,导电性和透明度之间的理想折衷。这项工作揭示了一种具有高导电性和透明度的分散和稳定的石墨烯的导电油墨的多组分协同稳定方法。可商购的石墨烯(<10层)材料(kng(r)-g2)选择,并使用乙醇/水(2/1,v / v)作为共溶剂来分散石墨烯薄片。多壁碳纳米管,提供通过PI-PI力和两亲性聚合物聚乙烯吡咯烷酮连接石墨烯的网络,其作为表面活性剂的作用是必不可少的,以稳定导电油墨。通过滴浇铸,旋涂和喷墨打印,沉积膜和喷墨印刷和沉积薄膜的薄片电阻,沉积薄膜的薄片电阻为低至180ω/ Sq,光学透射率为90%,可以沉积在不同的基材上。 。本作工作中报告的方法是工业生产朝向石墨烯复合导电油墨,具有高导电性和印刷电子应用的透明度。

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