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Predicting the optoelectronic properties of nanowire films based on control of length polydispersity

机译:基于长度多分散性控制的纳米线薄膜的光电性能预测

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摘要

We demonstrate that the optoelectronic properties of percolating thin films of silver nanowires (AgNWs) are predominantly dependent upon the length distribution of the constituent AgNWs. A generalized expression is derived to describe the dependence of both sheet resistance and optical transmission on this distribution. We experimentally validate the relationship using ultrasonication to controllably vary the length distribution. These results have major implications where nanowire-based films are a desirable material for transparent conductor applications; in particular when application-specific performance criteria must be met. It is of particular interest to have a simple method to generalize the properties of bulk films from an understanding of the base material, as this will speed up the optimisation process. It is anticipated that these results may aid in the adoption of nanowire films in industry, for applications such as touch sensors or photovoltaic electrode structures.
机译:我们证明银纳米线(AgNWs)渗滤薄膜的光电性能主要取决于组成AgNWs的长度分布。导出了一个通用表达式来描述薄层电阻和光学透射率对这种分布的依赖性。我们通过超声验证可控地改变长度分布,以实验方式验证这种关系。这些结果对基于纳米线的薄膜是透明导体应用的理想材料具有重大意义。特别是在必须满足特定于应用程序的性能标准时。特别有趣的是,有一种简单的方法可以根据对基材的了解来概括体膜的性能,因为这将加快优化过程。预期这些结果可能有助于纳米线膜在工业中被采用,以用于诸如触摸传感器或光伏电极结构的应用。

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