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Optoelectronic performance of AgNW transparent conductive films with different width-to-height ratios and a figure of merit embodying an optical haze

机译:不同宽度与高度比率的AgNW透明导电膜的光电性能和体现光学雾度的优点。

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摘要

Transparent conductive films (TCFs) based on rectangularly shaped silver nanowires (AgNWs) with different width-to-height ratios were theoretically studied. We show that tall AgNWs (height > width) possess higher transmittance and lower sheet resistance compared to other configurations of AgNWs. Moreover, tall AgNWs possesses significantly higher optical haze, which makes them a transparent conductor of choice for thin solar cell applications. For applications requiring low haze such as displays and touch screens, we propose an updated figure of merit embodying transmittance, sheet resistance and haze, allowing tuning width-to-height ratio to achieve a reasonable AgNW TCF performance trade-off. Obtained results offer a means for deeper analysis of AgNW properties for many optoelectronic applications.
机译:从理论上研究了基于具有不同宽度与高度比率的矩形银纳米线(AgNW)的透明导电膜(TCF)。与其他AGNW的配置相比,我们表明高大的Agnws(高度>宽度)具有更高的透射率和较低的薄层电阻。此外,高架AGNW具有明显更高的光学雾霾,这使得它们成为薄太阳能电池应用的透明导体。对于需要低雾度的应用,如显示和触摸屏,我们提出了一个更新的优点,体现透射率,薄层电阻和雾度,允许调整宽度到高度比率,以实现合理的AGNW TCF性能权衡。获得的结果为许多光电应用提供了深入分析的方法,提供了一种深入分析Agnw性能的手段。

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