2D Titanium carbide printed flexible ultrawideband monopole antenna for wireless communications

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作者
Weiwei Zhao
Hao Ni
Chengbo Ding
Leilei Liu
Qingfeng Fu
Feifei Lin
Feng Tian
Pin Yang
Shujuan Liu
Wenjun He
Xiaoming Wang
Wei Huang
Qiang Zhao
机构
[1] Nanjing University of Posts & Telecommunications,State Key Laboratory of Organic Electronics and Information Displays & Jiangsu Key Laboratory for Biosensors, Institute of Advanced Materials (IAM)
[2] Nanjing University of Posts & Telecommunications,College of Electronic and Optical Engineering & College of Flexible Electronics (Future Technology), National and Local Joint Engineering Laboratory of RF Integration and Micro
[3] Nanjing University of Posts and Telecommunications,Assembly Technology
[4] Northwestern Polytechnical University,Key Lab of Broadband Wireless Communication and Sensor Network Technology
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摘要
Flexible titanium carbide (Ti3C2) antenna offers a breakthrough in the penetration of information communications for the spread of Internet of Things (IoT) applications. Current configurations are constrained to multi-layer complicated designs due to the limited conformal integration of the dielectric substrate and additive-free Ti3C2 inks. Here, we report the flexible ultrawideband Ti3C2 monopole antenna by combining strategies of interfacial modification and advanced extrusion printing technology. The polydopamine, as molecular glue nano-binder, contributes the tight adhesion interactions between Ti3C2 film and commercial circuit boards for high spatial uniformity and mechanical flexibility. The bandwidth and center frequency of Ti3C2 antenna can be well maintained and the gain differences fluctuate within ±0.2 dBi at the low frequency range after the bent antenna returns to the flat state, which conquers the traditional inelastic Cu antenna. It also achieves the demo instance for the fluent and stable real-time wireless transmission in bending states.
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