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首页> 外文期刊>ACS applied materials & interfaces >Large Pulsed Electron Beam Welded Percolation Networks of Silver Nanowires for Transparent and Flexible Electrodes
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Large Pulsed Electron Beam Welded Percolation Networks of Silver Nanowires for Transparent and Flexible Electrodes

机译:银纳米线的大脉冲电子束焊接渗流网络,用于透明和柔性电极

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摘要

Mechanical properties of transparent electrodes, including flexibility, are important in flexible electronics for sustaining electrical conductivity under bending with small radius of curvature. Low contact resistance of junctions in metal nanowire percolation networks is the most important factor to produce electrodes with excellent optical, electrical and mechanical performance. Here, we report the fabrication of welded silver nanowire percolation networks using large pulsed electron beam (LPEB) irradiation as a welding process of silver nanowires (AgNWs). It results in modification of electrical and mechanical properties because of the low contact resistance at welded junctions. Consequently, the flexible and transparent AgNW electrodes fabricated by LPEB irradiation showed lower sheet resistance of 12.63 Omega sq(-1) at high transmittance of 93% (at 550 nm), and superb mechanical flexibility, compared with other AgNW electrodes prepared by thermal treatement and without any treatment. Polymer light-emitting diodes (PLEDs) using AgNWs by LPEB irradiation were fabricated to confirm that the AgNW electrode by LPEB irradiation was able to become alternative to indium tin oxide (ITO) and they showed good device performance as a maximum luminous efficiency of 7.37 cd A(-1),and excellent mechanical flexibility under bending with small radius of curvature.
机译:透明电极的机械性能(包括柔韧性)在挠性电子产品中对于在小曲率半径的弯曲下维持导电性很重要。金属纳米线渗滤网络中结的低接触电阻是生产具有出色光学,电气和机械性能的电极的最重要因素。在这里,我们报告使用大脉冲电子束(LPEB)辐射作为银纳米线(AgNWs)的焊接工艺来制造焊接银纳米线渗滤网络。由于焊接接头处的接触电阻低,因此会导致电气和机械性能发生变化。因此,与通过热处理制备的其他AgNW电极相比,通过LPEB辐射制备的柔性透明AgNW电极在93%的高透射率(在550 nm)下显示出较低的薄层电阻(12.63Ωsq(-1))和极好的机械柔韧性。没有任何治疗制作了通过LPEB辐照使用AgNW的聚合物发光二极管(PLED),以确认通过LPEB辐照的AgNW电极能够替代氧化铟锡(ITO),并且它们具有良好的器件性能,最大发光效率为7.37 cd A(-1),在曲率半径小的弯曲下具有出色的机械柔韧性。

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