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基于石墨烯薄片、碳纳米管和银纳米线的注入墨水双频天线。

Ink-injected dual-band antennas based on graphene flakes, carbon nanotubes and silver nanowires.

作者信息

Qiu Haochuan, Liu Houfang, Jia Xiufeng, Liu Xiao, Li Yuxing, Jiang Tianyu, Xiong Benkuan, Yang Yi, Ren Tian-Ling

机构信息

Institute of Microelectronics, Tsinghua University Beijing 100084 China

Tsinghua National Laboratory for Information Science and Technology, Tsinghua University Beijing 100084 China.

出版信息

RSC Adv. 2018 Nov 7;8(65):37534-37539. doi: 10.1039/c8ra08018f. eCollection 2018 Nov 1.

Abstract

The transition from the current 4 generation mobile networks (4G) to the next generation, known as 5 generation mobile networks (5G), is expected to occur within the next decade. To provide greater network speed, capacity and better coverage, the wireless broadband technologies need to update traditional antennas for high frequency and millimeter wavelengths. In this study, meander line dipole antennas produced by direct ink-injecting technology have been successfully designed, fabricated and characterized, where the ink-injecting technology may open new routes to the fabrication of wireless antenna applications. An accurate electromagnetic numerical analysis model for the proposed meander line antenna is also developed. The designed dual-band antenna based on graphene flakes and Ag nanowires can operate from 1.2 GHz up to the 1.5 GHz band and from 3.2 GHz up to the 3.8 GHz band with | | > 10 dB for wireless communications applications. Different mixtures by mass ratio of aqueous dispersions of CNTs and Ag nanowires (1 : 1, 5 : 1, 10 : 1, 20 : 1) are also prepared to investigate the influence of the network structure on the performance of the meander line antennas.

摘要

从当前的第四代移动网络(4G)向下一代,即第五代移动网络(5G)的过渡预计将在未来十年内发生。为了提供更高的网络速度、容量和更好的覆盖范围,无线宽带技术需要更新用于高频和毫米波波长的传统天线。在本研究中,通过直接喷墨技术生产的曲折线偶极天线已成功设计、制造并进行了特性表征,其中喷墨技术可能为无线天线应用的制造开辟新途径。还开发了所提出的曲折线天线的精确电磁数值分析模型。基于石墨烯薄片和银纳米线设计的双频天线可在1.2 GHz至1.5 GHz频段以及3.2 GHz至3.8 GHz频段工作,对于无线通信应用,其| | > 10 dB。还制备了碳纳米管和银纳米线水分散体按质量比(1∶1、5∶1、10∶1、20∶1)的不同混合物,以研究网络结构对曲折线天线性能的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41e8/9089452/8132faf4f6e0/c8ra08018f-f1.jpg

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