电磁辐射
材料科学
吸收(声学)
频带
电介质
电磁频谱
工程物理
电磁仿真
无线电频谱
低频
透视图(图形)
微波食品加热
光电子学
计算机科学
作者
Junye Cheng,Huibin Zhang,Mingqiang Ning,Hassan Raza,Deqing Zhang,Guangping Zheng,Qingbin Zheng,Renchao Che
标识
DOI:10.1002/adfm.202200123
摘要
Vigorous development of 5G communication technologies can boost mobile networks yet bring in electromagnetic interferences and safety concerns in utilizing electronic devices. Particularly, 5G network can not only involve a low-frequency band of n78 (3.3–3.8 GHz) but also cover multi-frequency bands of n77 (3.3–4.2 GHz) and n79 (4.4–5.0 GHz), displaying multiple electromagnetic radiations. Countless efforts have been devoted to investigating electromagnetic wave (EMW) absorbers with low- and multi-band absorption properties. However, in terms of emerging materials and designs, few reports propose the mechanisms related to those properties. This perspective briefly reviews the impressive achievements of low- and multi-frequency EMW absorbers and analyzes the design strategies that may enable low- and multi-frequency absorption. Furthermore, the cutting-edge mechanisms of corresponding electromagnetic responses, such as Snoek limit, quarter wavelength, and dielectric-magnetic synergy effects are elaborated. Thus, this perspective can shed light on the new trends and ongoing challenges for EMW absorbers and further promote their practical application.
科研通智能强力驱动
Strongly Powered by AbleSci AI