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Single Step Laser Transfer and Laser Curing of Ag NanoWires: A Digital Process for the Fabrication of Flexible and Transparent Microelectrodes

机译:Ag纳米线的单步激光转移和激光固化:柔性和透明微电极制造的数字过程

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摘要

Ag nanowire (NW) networks have exquisite optical and electrical properties which make them ideal candidate materials for flexible transparent conductive electrodes. Despite the compatibility of Ag NW networks with laser processing, few demonstrations of laser fabricated Ag NW based components currently exist. In this work, we report on a novel single step laser transferring and laser curing process of micrometer sized pixels of Ag NW networks on flexible substrates. This process relies on the selective laser heating of the Ag NWs induced by the laser pulse energy and the subsequent localized melting of the polymeric substrate. We demonstrate that a single laser pulse can induce both transfer and curing of the Ag NW network. The feasibility of the process is confirmed experimentally and validated by Finite Element Analysis simulations, which indicate that selective heating is carried out within a submicron-sized heat affected zone. The resulting structures can be utilized as fully functional flexible transparent electrodes with figures of merit even higher than 100. Low sheet resistance (<50 Ohm/sq) and high visible light transparency (>90%) make the reported process highly desirable for a variety of applications, including selective heating or annealing of nanocomposite materials and laser processing of nanostructured materials on a large variety of optically transparent substrates, such as Polydimethylsiloxane (PDMS).
机译:银纳米线(NW)网络具有出色的光学和电学特性,使其成为柔性透明导电电极的理想候选材料。尽管Ag NW网络与激光加工具有兼容性,但目前很少有激光制造的基于Ag NW的组件的演示。在这项工作中,我们报告了一种新颖的单步激光转移和激光固化工艺,该工艺在柔性基板上具有微米级的Ag NW网络像素。该过程依赖于由激光脉冲能量引起的Ag NW的选择性激光加热以及随后聚合物基底的局部熔化。我们证明了单个激光脉冲可以诱导Ag NW网络的转移和固化。该方法的可行性已通过实验验证,并通过有限元分析模拟得到了验证,这表明选择性加热是在亚微米尺寸的热影响区内进行的。所得结构可用作品质因数甚至高于100的全功能柔性透明电极。低薄层电阻(<50 Ohm / sq)和高可见光透明度(> 90%)使所报道的方法非常适合各种应用,包括对纳米复合材料进行选择性加热或退火,以及在各种光学透明基材(例如聚二甲基硅氧烷(PDMS))上对纳米结构材料进行激光加工。

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