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Ultra-high-frequency microwave response from flexible transparent Au electromagnetic metamaterial nanopatterned antenna

机译:来自柔性透明AU电磁超材料纳米模式天线的超高频微波响应

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摘要

Flexible transparent materials are a hot spot in current research but also a key technical difficulty in industry. They are playing an increasingly important role in flexible transparent display applications such as organic light-emitting diodes, transparent electrodes, and so on. On the other hand, the present research on nanopatterned antennas is mainly concentrated on the optical frequency but rarely on the microwave (such as 3G, 4G, and 5G) and terahertz frequency band communications, where nanopatterned antennas can have many novel applications. To the authors' knowledge, this is the first paper that presents a method for preparing a flexible transparent Au electromagnetic metamaterial nanopatterned antenna. We study its free-space performance at ultra-high frequency and its application in electronic products such as smartphones, tablets, personal computers, and wearable devices (such as smart watches) which have the function of mobile communication. The experimental results showed that the transparency of the antenna designed and fabricated in this work can be as high as 94%, and its efficiency can reach 74.5%-91.9% of antennas commonly seen at present in academia and industry. By adjusting the capacitive and inductive reactance of the nanopatterned antenna's matching circuit, combined with its measured efficiency and 3D electromagnetic simulation results, we speculate on the mechanism of the Au electromagnetic metamaterial nanopatterned antenna with good performance.
机译:灵活的透明材料是当前研究的热点,而且在工业中的关键技术难题。他们是在玩在柔性透明显示应用中,例如有机发光二极管,透明电极,等越来越重要的作用。在另一方面,纳米图案上的天线的本研究主要集中在光频率但是很少在微波(如3G,4G,5G和)和太赫兹频带的通信,其中,纳米图案的天线可以有许多新的应用。到作者所知,这是第一个纸呈现制备挠性透明的Au电磁超材料天线纳米图案的方法。我们研究在超高频的自由空间性能及其在电子产品,如智能手机,平板电脑,个人电脑,且可穿戴设备(如智能手表),具有移动通信功能的应用程序。实验结果表明,设计和制造在这项工作中,天线的透明度可以是高达94%,而其效率可达到74.5%-91.9天线%目前在学术界和工业界中常见。通过调整纳米图案天线的匹配电路,其测量效率和3D电磁仿真结果相结合的电容和电感性电抗,我们推测在Au电磁超材料纳米图案天线的机构具有良好的性能。

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