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Highly Omnidirectional and Frequency Controllable Carbon/Polyaniline-based 2D and 3D Monopole Antenna

机译:高度全向和频率可控的基于碳/聚苯胺的2D和3D单极天线

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摘要

Highly omnidirectional and frequency controllable carbon/polyaniline (C/PANI)-based, two- (2D) and three-dimensional (3D) monopole antennas were fabricated using screen-printing and a one-step, dimensionally confined hydrothermal strategy, respectively. Solvated C/PANI was synthesized by low-temperature interfacial polymerization, during which strong π–π interactions between graphene and the quinoid rings of PANI resulted in an expanded PANI conformation with enhanced crystallinity and improved mechanical and electrical properties. Compared to antennas composed of pristine carbon or PANI-based 2D monopole structures, 2D monopole antennas composed of this enhanced hybrid material were highly efficient and amenable to high-frequency, omnidirectional electromagnetic waves. The mean frequency of C/PANI fiber-based 3D monopole antennas could be controlled by simply cutting and stretching the antenna. These antennas attained high peak gain (3.60 dBi), high directivity (3.91 dBi) and radiation efficiency (92.12%) relative to 2D monopole antenna. These improvements were attributed the high packing density and aspect ratios of C/PANI fibers and the removal of the flexible substrate. This approach offers a valuable and promising tool for producing highly omnidirectional and frequency-controllable, carbon-based monopole antennas for use in wireless networking communications on industrial, scientific, and medical (ISM) bands.
机译:高度全向和频率可控的碳/聚苯胺(C / PANI)基的二维(2D)和三维(3D)单极天线分别采用丝网印刷和一步法尺寸受限的水热策略制造。溶剂化的C / PANI是通过低温界面聚合反应合成的,在此过程中,石墨烯与PANI的醌环之间的强烈π-π相互作用导致扩展的PANI构象,结晶度增强,机械和电性能得到改善。与由原始碳或基于PANI的2D单极结构组成的天线相比,由这种增强型混合材料构成的2D单极天线是高效的,并且可以承受高频全向电磁波。基于C / PANI光纤的3D单极天线的平均频率可以通过简单地切割和拉伸天线来控制。相对于2D单极天线,这些天线获得了高峰值增益(3.60 dBi),高方向性(3.91 dBi)和辐射效率(92.12%)。这些改进归因于C / PANI纤维的高堆积密度和长宽比,以及柔性基材的去除。这种方法为生产高度全向和频率可控的碳基单极天线提供了一种有价值的有前途的工具,这些天线可用于工业,科学和医学(ISM)频段的无线网络通信。

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