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Dictating anisotropic electric conductivity of a transparent copper nanowire coating by the surface structure of wood

机译:通过木材的表面结构确定透明铜纳米线涂层的各向异性电导率

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摘要

In this article, a robust, air-stable, flexible and transparent copper (Cu) nanowire (NW) network coating on the surface of the wood is presented, based on a fusion welding of the Cu NWs by photonic curing. Thereby, an anisotropic conductivity can be achieved, which is originating from the structural organization of the wood body and its surface. Furthermore, the Cu NWs are protected from oxidation or wear by a commercially available paraffin wax—polyolefin, which also results in surface water repellency. The developed processing steps present a facile and flexible routine for applying Cu NW transparent conductors to abundant biomaterials and solve current manufacturing obstacles for corrosion-resistant circuits while keeping the natural appearance of the substrate. It may open a venue for more extensive utilization of materials from renewable resources such as wood for electronic devices in smart buildings or mobility applications.
机译:在本文中,基于通过光子固化对铜纳米线的熔焊,提出了一种坚固,空气稳定,柔性且透明的铜(Cu)纳米线(NW)网络涂层。由此,可以实现各向异性导电性,其源于木材及其表面的结构组织。此外,市售的石蜡(聚烯烃)可保护Cu NW免受氧化或磨损,这也可导致表面防水。制定的处理步骤为将铜纳米线透明导体应用于丰富的生物材料提供了一种简便灵活的程序,并解决了目前耐腐蚀电路的制造障碍,同时保持了基板的自然外观。它可以为更广泛地利用可再生资源中的材料(例如用于智能建筑或移动应用中的电子设备的木材)开辟场所。

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