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The effect of rod orientation on electrical anisotropy in silver nanowire networks for ultra-transparent electrodes

机译:杆取向对超透明电极银纳米线网络中电各向异性的影响

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摘要

Two-dimensional networks made of metal nanowires are excellent paradigms for the experimental observation of electrical percolation caused by continuous jackstraw-like physical pathways. Such systems became very interesting as alternative material in transparent electrodes, which are fundamental components in display devices. This work presents the experimental characterization of low-haze and ultra-transparent electrodes based on silver nanowires. The films are created by dip-coating, a feasible and scalable liquid film coating technique. We have found dominant alignment of the silver nanowires in withdrawal direction. The impact of this structural anisotropy on electrical anisotropy becomes more pronounced for low area coverage. The rod alignment does not influence the technical usability of the films as significant electrical anisotropy occurs only at optical transmission higher than 99 %. For films with lower transmission, electrical anisotropy becomes negligible. In addition to the experimental work, we have carried out computational studies in order to explain our findings further and compare them to our experiments and previous literature. This paper presents the first experimental observation of electrical anisotropy in two-dimensional silver nanowire networks close at the percolation threshold.
机译:由金属纳米线制成的二维网络是极好的范例,可用于实验观察由连续的类似稻草般的物理路径引起的电渗流。这种系统作为透明电极中的替代材料变得非常有趣,而透明电极是显示设备中的基本组件。这项工作提出了基于银纳米线的低雾度和超透明电极的实验表征。膜是通过浸涂法(一种可行且可扩展的液膜涂布技术)制成的。我们已经发现银纳米线在撤回方向上的主要排列。对于低面积覆盖,该结构各向异性对电各向异性的影响变得更加明显。棒的排列不会影响薄膜的技术可用性,因为仅当光透射率高于99%时才会出现明显的电各向异性。对于透射率较低的薄膜,电各向异性可以忽略不计。除了实验工作之外,我们还进行了计算研究,以便进一步解释我们的发现并将其与我们的实验和以前的文献进行比较。本文提出了在接近渗滤阈值的二维银纳米线网络中电各向异性的第一个实验观察。

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