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Highly flexible and semi-transparent Ag-Cu alloy electrodes for high performance flexible thin film heaters

机译:高性能柔性薄膜加热器的高度柔性和半透明AG-Cu合金电极

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摘要

We investigated the properties of thermally evaporated Ag-Cu films for application as flexible and semitransparent electrodes for semi-transparent flexible thin film heaters (TFHs) and heat shielding films (HSFs). The effects of Ag-Cu thickness on the electrical, optical, morphological, and mechanical properties of the Ag-Cu films were investigated in detail. Based on figure of merit values calculated from the sheet resistance and optical transmittance, we optimized the thickness of the Ag-Cu alloy film. Optimized film showed no resistance changes and no cracks, even with inner and outer bending radii smaller than 5 mm, indicating sufficiently high flexibility for application in TFHs and HSFs. In addition, we measured the work function of the Ag-Cu films using Kelvin probe force microscopy to correlate the work function and surface morphology. The effect of the thickness of the Ag-Cu alloy electrodes on the saturation voltage and temperature of flexible TFHs was also investigated. In addition, we investigated the feasibility of using semi-transparent Ag-Cu alloy film in HSFs. Effective heat generation and heat shield performance of Ag-Cu alloy films suggest that the multi-functional Ag-Cu films described here can potentially be applied to create energy-efficient automobile windows and smart windows for building energy management systems.
机译:我们研究了热蒸发的Ag-Cu膜的性质,用于施加作为柔性和半透相电极的用于半透明柔性薄膜加热器(TFHS)和隔热膜(HSF)。研究了Ag-Cu厚度对Ag-Cu膜的电气,光学,形态学和力学性能的影响。基于从薄层电阻和光学透射率计算的优异值的图,我们优化了Ag-Cu合金膜的厚度。优化的薄膜显示没有阻力变化,也没有裂缝,即使内部和外部弯曲半径小于5mm,表明在TFHS和HSF中的应用足够高。此外,我们使用kelvin探针力显微镜测量了Ag-Cu膜的功函数,以将功函数和表面形态相关联。还研究了AG-Cu合金电极厚度对柔性TFHS的饱和电压和温度的影响。此外,我们研究了在HSF中使用半透明Ag-Cu合金膜的可行性。 Ag-Cu合金薄膜的有效发热和隔热性能表明,这里描述的多功能Ag-Cu膜可能适用于为建筑能源管理系统创造节能汽车窗和智能窗口。

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  • 来源
    《RSC Advances 》 |2017年第72期| 共11页
  • 作者单位

    Kyung Hee Univ Dept Adv Mat Engn Informat &

    Elect 1 Seocheon Yongin 446701 Gyeonggi Do South Korea;

    Ewha Womans Univ Dept Phys Seoul 120750 South Korea;

    Ewha Womans Univ Dept Phys Seoul 120750 South Korea;

    Kyung Hee Univ Dept Adv Mat Engn Informat &

    Elect 1 Seocheon Yongin 446701 Gyeonggi Do South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
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