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Fabrication and optimization of transparent conductive films using laser annealing and picosecond laser patterning

机译:使用激光退火和皮秒激光图案化技术制造和优化透明导电膜

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In this article, we propose a systematic method of optimizing the properties of transparent conductive films that possess high electrical conductivity and low optical transparency, by using laser patterning and doping. Prediction maps were constructed, which show the effects of patterning and doping for all possible combinations of initial film conditions (in terms of sheet resistance and transparency) and the degrees of patterning. Using these maps, the properties of transparent conductive films can be easily optimized. We first fabricated graphene-based transparent conductive films on fused silica glass by laser annealing of diamond-like carbon films, and then picosecond laser patterning and doping were successively conducted employing the processing conditions suggested by the maps. For patterning, two types of patterns, circular and square, were considered and prediction maps were separately constructed for both patterns. In this study, a film originally having a sheet resistance of 578 Omega/sq and a transparency of 25% was transformed to a 2823 Omega/sq and 80.6% film when 73% of the film was removed using square patterns and doped by nitric acid. Experimental data agreed well with predicted values. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本文中,我们提出了一种系统的方法,该方法通过使用激光构图和掺杂来优化具有高电导率和低光学透明度的透明导电膜的性能。构建了预测图,该图显示了初始膜条件(就薄层电阻和透明度而言)和构图度的所有可能组合所产生的构图和掺杂效果。使用这些图,可以容易地优化透明导电膜的特性。我们首先通过类金刚石碳膜的激光退火在熔融石英玻璃上制备了石墨烯基透明导电膜,然后使用这些图建议的加工条件依次进行了皮秒激光图案化和掺杂。为了进行图案化,考虑了两种类型的图案:圆形和正方形,并分别为这两种图案构建了预测图。在这项研究中,当使用正方形图案除去73%的薄膜时,原本具有578 Omega / sq和25%的透明度的薄膜转变为2823 Omega / sq和80.6%的薄膜。 。实验数据与预测值吻合良好。 (C)2017 Elsevier B.V.保留所有权利。

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