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February 14, 2026Advanced Materials28 citations

Engineering Dielectric Genes in Debye Relaxation Model toward Frequency‐Band‐Reliant Electromagnetic Responses

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JCJunye ChengQCQingkui ChenHWHonghan Wang

Key Points

  • This research investigates the mechanisms of dielectric loss in electromagnetic wave absorption materials to enhance their design.
  • Analyzed dielectric parameters using the Debye relaxation model
  • Developed a dynamic trend model for predicting electromagnetic wave absorption
  • Discussed the evolution and future prospects of EMWA material design
  • Identified key dielectric parameters affecting electromagnetic wave absorption at various frequencies
  • Established a predictive model illustrating dynamic trends in dielectric loss
  • Provided insights for developing improved EMWA materials for wireless communications

Abstract

ABSTRACT Electromagnetic wave absorption (EMWA) materials are widely used in wireless communications and play an important role in contemporary smart economy. EMWA materials that show dielectric losses have attracted research attention owing to their unique advantages. However, previous studies have focused on material synthesis whereas few studies have systematically explained the mechanism of dielectric loss. Taking the concept of dielectric genes as the starting point and Debye relaxation model as the “compass,” the dependence of the electromagnetic wave absorption at different frequencies on each dielectric parameter is introduced in detail, and a dynamic trend model is constructed for the prediction of electromagnetic wave absorption characteristics, followed by discussion of the development and future prospects of EMWA materials, providing inspiration for the design of dielectric‐loss absorption materials in the future.

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Cite This Study

Cheng et al. (2026) studied this question.

synapsesocial.com/papers/699011602ccff479cfe58061https://doi.org/10.1002/adma.202521471
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