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Finite-size scaling in silver nanowire films: design considerations for practical devices

机译:在银纳米线的电影——的尺寸缩放:为实际设备设计考虑

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摘要

We report the first application of finite-size scaling theory to nanostructured percolating networks, using silver nanowire (AgNW) films as a model system for experiment and simulation. AgNWs have been shown to be a prime candidate for replacing Indium Tin Oxide (ITO) in applications such as capacitive touch sensing. While their performance as large area films is well-studied, the production of working devices involves patterning of the films to produce isolated electrode structures, which exhibit finite-size scaling when these features are sufficiently small. We demonstrate a generalised method for understanding this behaviour in practical rod percolation systems, such as AgNW films, and study the effect of systematic variation of the length distribution of the percolating material. We derive a design rule for the minimum viable feature size in a device pattern, relating it to parameters which can be derived from a transmittance-sheet resistance data series for the material in question. This understanding has direct implications for the industrial adoption of silver nanowire electrodes in applications where small features are required including single-layer capacitive touch sensors, LCD and OLED display panels.
机译:我们报告的第一个应用程序——的尺寸比例理论纳米渗透网络,利用银纳米线(AgNW)作为一个电影实验和仿真的模型系统。已被证明是一个主要候选人吗取代氧化铟锡(ITO)的应用程序电容式触摸感应等。性能大面积电影研究,生产设备包括工作模式的电影产生孤立展览——的尺寸的电极结构当这些特性充分扩展小。理解这种行为在实际杆渗滤系统,AgNW电影等研究的系统性变化的影响长度分布的渗透材料。我们得到一个最小可行的设计规则特征尺寸在一个设备模式中,有关参数可以来自一个transmittance-sheet阻力数据系列材料的问题。对工业采用的直接影响银纳米线电极的应用程序需要小的特性包括在哪里单层电容触摸传感器,液晶和OLED显示器面板。

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