Progress in microwave absorbing materials: A critical review

微波食品加热 材料科学 超材料 介电损耗 电介质 电磁辐射 多孔介质 散射 纳米技术 工程物理 光电子学 多孔性 复合材料 光学 计算机科学 物理 电信
作者
Sahil Sharma,Saidi Reddy Parne,Saran Srihari Sripada Panda,Suman Gandi
出处
期刊:Advances in Colloid and Interface Science [Elsevier BV]
卷期号:327: 103143-103143 被引量:239
标识
DOI:10.1016/j.cis.2024.103143
摘要

Microwave-absorbing materials play a significant role in various applications that involve the attenuation of electromagnetic radiation. This critical review article provides an overview of the progress made in the development and understanding of microwave-absorbing materials. The interaction between electromagnetic radiation and absorbing materials is explained, with a focus on phenomena such as multiple reflections, scattering, and polarizations. Additionally, types of losses that affect the performance of microwave absorbers are also discussed, including dielectric loss, conduction loss, relaxation loss, magnetic loss, and morphological loss. Each of these losses has different implications for the effectiveness of microwave absorbers. Further, a detailed review is presented on various types of microwave absorbing materials, including carbonaceous materials, conducting polymers, magnetic materials, metals and their composites, 2D materials (such as MXenes and 2D-transition metal dichalcogenides), biomass-derived materials, carbides, sulphides, phosphides, high entropy (HE) materials and metamaterials. The characteristics, advantages, and limitations of each material are examined. Overall, this review article highlights the progress achieved in the field of microwave-absorbing materials. It underlines the importance of optimizing different types of losses to enhance the performance of microwave absorbers. The review also recognizes the potential of emerging materials, such as 2D materials and high entropy materials, in further advancing microwave-absorbing properties.
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