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Highly efficient direct friction method for flexible transparent electronic devices based on graphite films featured with economical, environmental and energy saving advantages

机译:具有经济,环保和节能优势的基于石墨膜的柔性透明电子器件的高效直接摩擦方法

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摘要

Abstract In this research, we developed a simple direct friction method to fabricate transparent conductive films. It is a highly efficient technology as the progress consumes only several minutes from raw materials to final products and the adhesion between matrix and functional layer is strong. Flexible transparent conductive films (TCFs) based on graphite and polyethylene terephthalate substrates exhibited satisfied properties with surface resistivity from 5.07 to 83.6 KΩ sq−1, optical transparency from 70 to 85% at 550 nm wavelength, and surface stability strong enough to protect them from aging under destructive surface treatments and bending. The main mechanisms are based on three key factors: (1) The lubrication property of two dimensional layered graphite, (2) Suitable wear properties of target transparent polymer matrix and rubbing medium, (3) A soft interlayer between glass block and rubbing medium. Furthermore, the samples show some potential applications such as flexible transparent heaters, flexible transparent humidity sensors and flexible transparent strain sensors. This technology has great potential to meet the requirements of transparent conductive electrodes for future optoelectronics: lightweight, flexible, economic, and especially compatible with large-scale manufacture. This method and the TCFs have some economical, environmental and energy saving advantages.
机译:摘要 在这项研究中,我们开发了一种简单的直接摩擦方法来制造透明导电膜。这是一项高效的技术,因为从原材料到最终产品仅消耗几分钟的时间,并且基质与功能层之间的附着力很强。基于石墨和聚对苯二甲酸乙二醇酯基底的柔性透明导电膜(TCF)表现出令人满意的性能,其表面电阻率为5.07至83.6KΩsq <上标> -1 ,在550 nm波长下的光学透明度为70至85%具有足够的稳定性,可以保护它们在破坏性的表面处理和弯曲下不会老化。主要机理基于三个关键因素:(1)二维层状石墨的润滑性能;(2)目标透明聚合物基体和摩擦介质的合适磨损性能;(3)玻璃块与摩擦介质之间的软中间层。此外,样品还显示了一些潜在的应用,例如柔性透明加热器,柔性透明湿度传感器和柔性应变传感器。这项技术具有巨大的潜力,可以满足未来光电子学对透明导电电极的要求:轻巧,灵活,经济并且特别适合大规模生产。该方法和TCF具有一定的经济,环境和节能优势。

著录项

  • 来源
    《Journal of materials science》 |2017年第14期|10758-10764|共7页
  • 作者

    Qing Yu; Wen Li;

  • 作者单位

    Sinosteel Corporation Wuhan Safety and Environmental Protection Research Institute;

    School of Management, South-Central University for Nationalities;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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