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Modeling and design of multifunctional nanomaterial based flexible antenna

机译:多功能纳米材料柔性天线的建模与设计

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摘要

This paper presents the design of a novel flexible transparent butterfly antenna based on 2D nanomaterial graphene-metal grid, and its performance is simulated. In order to characterize the conductivity of graphene, the CVD-grown graphene is transferred to the ring-shape Teflon substrate. The graphene is then sandwiched between two APC-7 coaxial connectors and the S-parameters under TEM normal incident waves are measured to extract the surface conductivity through transmission matrix, in which the de-embedding process can be avoided. The graphene-metal grid based antenna is fed by a coplanar waveguide (CPW) and the polyethylene terephthalate (PET) is selected as the substrate which needs to be both transparent and flexible. A CPW-fed slot-coupled patch antenna is designed and the performance is simulated. Consequently, the features of the antenna are explored when the antenna is bended at different degree along different axes.
机译:本文提出了一种基于二维纳米材料石墨烯-金属网格的新型柔性透明蝶形天线的设计,并对其性能进行了仿真。为了表征石墨烯的电导率,将CVD生长的石墨烯转移到环形特氟隆衬底上。然后将石墨烯夹在两个APC-7同轴连接器之间,并测量TEM法向入射波下的S参数,以通过传输矩阵提取表面电导率,从而可以避免去嵌入过程。基于石墨烯-金属栅格的天线由共面波导(CPW)馈电,并且选择聚对苯二甲酸乙二醇酯(PET)作为既需要透明又需要柔性的基板。设计了CPW馈电缝隙耦合贴片天线,并对其性能进行了仿真。因此,当天线沿不同的轴以不同的角度弯曲时,将探索天线的特性。

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