Scinovex
review Open AccessTop 1% cited

Dielectric Loss Mechanism in Electromagnetic Wave Absorbing Materials

Advanced Science · 2022 · Vol. 9(10) · pp. e2105553–e2105553
Ming QinLimin ZhangHongjing Wu

Abstract

Electromagnetic (EM) wave absorbing materials play an increasingly important role in modern society for their multi-functional in military stealth and incoming 5G smart era. Dielectric loss EM wave absorbers and underlying loss mechanism investigation are of great significance to unveil EM wave attenuation behaviors of materials and guide novel dielectric loss materials design. However, current researches focus more on materials synthesis rather than in-depth mechanism study. Herein, comprehensive views toward dielectric loss mechanisms including interfacial polarization, dipolar polarization, conductive loss, and defect-induced polarization are provided. Particularly, some misunderstandings and ambiguous concepts for each mechanism are highlighted. Besides, in-depth dielectric loss study and novel dielectric loss mechanisms are emphasized. Moreover, new dielectric loss mechanism regulation strategies instead of regular components compositing are summarized to provide inspiring thoughts toward simple and effective EM wave attenuation behavior modulation.

Electromagnetic wave absorption materialsAdvanced Antenna and Metasurface TechnologiesMetamaterials and Metasurfaces ApplicationsDielectricMechanism (biology)Materials scienceElectromagnetic radiationDielectric lossEngineering physicsCondensed matter physicsPhysicsOpticsOptoelectronics

Funding

  • National Natural Science Foundation of China
  • Fundamental Research Funds for the Central Universities
Citations
1,288
FWCI
72.54
field-weighted impact
References
206
Percentile
100%
vs. same field & year
Citations per year
Cited by
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.