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微波频率下化学气相沉积石墨烯动态调谐范围的研究:测定、预测与应用

A Study on the Dynamic Tunning Range of CVD Graphene at Microwave Frequency: Determination, Prediction and Application.

作者信息

Chen Hao, Liu Zhen-Guo, Geng Ming-Yang, Meng Xiang-Yu, Fu Wan-Lin, Ju Lu, Yu Bu-Yun, Yang Wu, Dai Yun-Qian, Lu Wei-Bing

机构信息

State Key Laboratory of Millimeter Waves, School of Information Science and Engineering, Southeast University, Nanjing 210096, China.

Center for Flexible RF Technology, Frontiers Science Center for Mobile Information Communication and Security, Southeast University, Nanjing 210096, China.

出版信息

Nanomaterials (Basel). 2022 Dec 11;12(24):4424. doi: 10.3390/nano12244424.

Abstract

In recent years, graphene has shown great application prospects in tunable microwave devices due to its tunable conductivity. However, the electromagnetic (EM) properties of graphene, especially the dynamic tunning characteristics, are largely dependent on experimental results, and thus are unable to be effectively predicted according to growth parameters, which causes great difficulties in the design of graphene-based tunable microwave devices. In this work, we systematically explored the impact of chemical vapor deposition (CVD) parameters on the dynamic tunning range of graphene. Firstly, through improving the existing waveguide method, the dynamic tunning range of graphene can be measured more accurately. Secondly, a direct mathematical model between growth parameters and the tunning range of graphene is established. Through this, one can easily obtain needed growth parameters for the desired tunning range of graphene. As a verification, a frequency tunable absorber prototype is designed and tested. The good agreement between simulation and experimental results shows the reliability of our mathematic model in the rapid design of graphene-based tunable microwave devices.

摘要

近年来,由于其可调电导率,石墨烯在可调谐微波器件中展现出了巨大的应用前景。然而,石墨烯的电磁(EM)特性,尤其是动态调谐特性,在很大程度上依赖于实验结果,因此无法根据生长参数有效地进行预测,这给基于石墨烯的可调谐微波器件的设计带来了极大困难。在这项工作中,我们系统地探究了化学气相沉积(CVD)参数对石墨烯动态调谐范围的影响。首先,通过改进现有的波导方法,可以更精确地测量石墨烯的动态调谐范围。其次,建立了生长参数与石墨烯调谐范围之间的直接数学模型。通过这个模型,人们可以轻松地为所需的石墨烯调谐范围获得所需的生长参数。作为验证,设计并测试了一个频率可调吸收器原型。模拟结果与实验结果的良好吻合表明了我们的数学模型在基于石墨烯的可调谐微波器件快速设计中的可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/019d/9786929/e2bdc95f5c80/nanomaterials-12-04424-g001.jpg

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