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Highly Flexible and Conductive Printed Graphene for Wireless Wearable Communications Applications

机译:用于无线可穿戴通信应用的高度灵活和导电的印刷石墨烯

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In this paper, we report highly conductive, highly flexible, light weight and low cost printed graphene for wireless wearable communications applications. As a proof of concept, printed graphene enabled transmission lines and antennas on paper substrates were designed, fabricated and characterized. To explore its potentials in wearable communications applications, mechanically flexible transmission lines and antennas under various bended cases were experimentally studied. The measurement results demonstrate that the printed graphene can be used for RF signal transmitting, radiating and receiving, which represents some of the essential functionalities of RF signal processing in wireless wearable communications systems. Furthermore, the printed graphene can be processed at low temperature so that it is compatible with heat-sensitive flexible materials like papers and textiles. This work brings a step closer to the prospect to implement graphene enabled low cost and environmentally friendly wireless wearable communications systems in the near future.
机译:在本文中,我们报告了用于无线可穿戴通信应用的高导电性,高柔性,轻质和低成本的印刷石墨烯。作为概念验证,在纸质基材上设计,制造和表征了可打印石墨烯的传输线和天线。为了探索其在可穿戴通信应用中的潜力,对各种弯曲情况下的机械柔性传输线和天线进行了实验研究。测量结果表明,所印刷的石墨烯可用于射频信号的发送,辐射和接收,这代表了无线可穿戴通信系统中射频信号处理的一些基本功能。此外,可以在低温下加工印刷的石墨烯,使其与纸张和纺织品等热敏柔性材料兼容。这项工作为在不久的将来实现启用石墨烯的低成本和环保无线可穿戴通信系统的前景拉近了一步。

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