Author:
Wang 王 Jun-Song 俊松,Ding 丁 Wei 伟,Zhang 张 Cheng-Hong 成宏,Qiu 邱 Kang 康,Gao 高 You-Lin 佑琳,Chen 陈 Mian-Ke 棉科,Adnan Aslam Muhammad,A. Khalifa Mahmoud,Luo 罗 Jia-Liang 家亮,Fang 方 Jun 军,Sheng 盛 Zhi-Gao 志高
Abstract
We utilized magnetic fields as an efficient tool to manipulate the orientation and electromagnetic properties of graphite micro-flakes (GMFs). As a result, we successfully developed a GMF double-layer homo-structure, which shows excellent electromagnetic absorption properties. By tuning the direction of a small magnetic field (850 G), vertical and horizontal aligned GMFs are produced. Their electromagnetic parameters are effectively tailored by this magneto-orientation effect, and the vertical and horizontal aligned GMFs achieve good results in terms of impedance matching and microwave absorption. With the combination of these two magneto-orientated layers, vertically oriented as the surficial impedance matching layer and horizontally oriented as the inner loss layer, we design a GMF-based double-layer homo-structure. After thickness optimization, −38.2 dB minimum reflection loss and 6.4 GHz (11.6–18.0 GHz) absorption bandwidth are achieved. Our findings further emphasize the importance of material orientation freedom and provide a magneto-strategy to design multiple-layer structures and to produce high-performance microwave devices.
Subject
General Physics and Astronomy
Cited by
1 articles.
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