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Metallic Nanowire-Based Transparent Electrodes for Next Generation Flexible Devices: a Review

机译:用于下一代柔性器件的基于金属纳米线的透明电极:综述

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Transparent electrodes attract intense attention in many technological fields, including optoelectronic devices, transparent film heaters and electromagnetic applications. New generation transparent electrodes are expected to have three main physical properties: high electrical conductivity, high transparency and mechanical flexibility. The most efficient and widely used transparent conducting material is currently indium tin oxide (ITO). However the scarcity of indium associated with ITO's lack of flexibility and the relatively high manufacturing costs have a prompted search into alternative materials. With their outstanding physical properties, metallic nanowire (MNW)-based percolating networks appear to be one of the most promising alternatives to ITO. They also have several other advantages, such as solution-based processing, and are compatible with large area deposition techniques. Estimations of cost of the technology are lower, in particular thanks to the small quantities of nanomaterials needed to reach industrial performance criteria. The present review investigates recent progress on the main applications reported for MNW networks of any sort (silver, copper, gold, core-shell nanowires) and points out some of the most impressive outcomes. Insights into processing MNW into high-performance transparent conducting thin films are also discussed according to each specific application. Finally, strategies for improving both their stability and integration into real devices are presented.
机译:透明电极在许多技术领域中引起了广泛的关注,包括光电设备,透明膜加热器和电磁应用。预计新一代透明电极将具有三个主要物理特性:高导电率,高透明性和机械柔韧性。目前,最有效和使用最广泛的透明导电材料是氧化铟锡(ITO)。然而,铟的稀缺与ITO缺乏灵活性以及相对较高的制造成本相关,促使人们开始寻找替代材料。凭借其出色的物理性能,基于金属纳米线(MNW)的渗流网络似乎是ITO最有希望的替代方法之一。它们还具有其他优点,例如基于溶液的处理,并且与大面积沉积技术兼容。该技术的成本估算较低,尤其是由于达到工业性能标准所需的纳米材料数量很少。本综述调查了报道的各种类型MNW网络(银,铜,金,核-壳纳米线)的主要应用的最新进展,并指出了一些令人印象深刻的成果。根据每个特定的应用,还讨论了将MNW处理为高性能透明导电薄膜的见解。最后,提出了改善其稳定性和集成到实际设备中的策略。

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