钴
微波食品加热
材料科学
制作
有损压缩
纳米技术
干扰(通信)
生化工程
计算机科学
工艺工程
工程物理
电信
工程类
冶金
频道(广播)
医学
替代医学
病理
人工智能
作者
Jemilat Yetunde Yusuf,Hassan Soleimani,Noorhana Yahya,Yekinni Kolawole Sanusi,Lawal Lanre Adebayo,Surajudeen Sikiru,Fatai Adisa Wahaab
标识
DOI:10.1016/j.ceramint.2020.07.244
摘要
Abstract With the advances and extensive application of electromagnetic (EM) waves in electronic and communication devices. EM pollution has been identified as a threat to human health whereby EM interference also affects the proper functioning of electronic devices. Therefore, the fabrication of novel microwave absorbing materials (MAMs) has become important to mitigate EM pollution and protect humans as well as other nearby electronic devices. The use of sole cobalt as MAM has gained significant attention due to its EM properties and suitable saturation magnetization. However, large density, eddy current loss, and poor corrosion resistance are some of the factors that hinder its practical application as an ideal MAMs. In this paper, recent advances towards overcoming these challenges have been reviewed. In particular, ways of regulating the morphology and optimizing the EM properties of cobalt-based MAM. Furthermore, fabrication of high-performance lightweight absorbers with hierarchical structures and formation of cobalt-based hybrid MAM with other lossy materials are discussed. Several factors affecting the microwave absorption performance of cobalt-based MAM are further discussed. Finally, the present limitations as well as prospects are put forward to give a new insight into the design of improved cobalt-based MAM.
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