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Stretchable and Reversibly Deformable Radio Frequency Antennas Based on Silver Nanowires

机译:基于银纳米线的可伸缩和可逆变形的射频天线

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We demonstrate a class of microstrip patch antennas that are stretchable, mechanically tunable, and reversibly deformable. The radiating element of the antenna consists of highly conductive and stretchable material with screen-printed silver nanowires embedded in the surface layer of an elastomeric substrate. A 3-GHz microstrip patch antenna and a 6-GHz 2-element patch array are fabricated. Radiating properties of the antennas are characterized under tensile strain and agree well with the simulation results. The antenna is reconfigurable because the resonant frequency is a function of the applied tensile strain. The antenna is thus well suited for applications like wireless strain sensing. The material and fabrication technique reported here could be extended to achieve other types of stretchable antennas with more complex patterns and multilayer structures.
机译:我们演示了一类可拉伸,机械可调和可逆变形的微带贴片天线。天线的辐射元件由高导电性和可拉伸材料组成,丝网印刷的银纳米线嵌入弹性体基底的表面层。制作了3 GHz微带贴片天线和6 GHz 2元素贴片阵列。天线的辐射特性在拉伸应变下得到表征,并与仿真结果吻合良好。该天线是可重新配置的,因为谐振频率是所施加拉伸应变的函数。因此,该天线非常适合诸如无线应变感测的应用。此处报道的材料和制造技术可以扩展为实现具有更复杂的图案和多层结构的其他类型的可拉伸天线。

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