Home / Research Articles Hub / A Review on Graphene‐Based Electromagnetic Functio...
⚛️ Physics & Space Science OpenAlex

A Review on Graphene‐Based Electromagnetic Functional Materials: Electromagnetic Wave Shielding and Absorption

📅 Published: July 1, 2022 👤 Yuxing Xia, Weiwei Gao, Chao Gao 📖 Advanced Functional Materials 📊 693 citations
AI-Generated Summary

Abstract Electromagnetic (EM) functional materials play an increasingly important role in solving EM wave pollution in both modern military and civil fields. Applications in the EM wave shielding and absorption fields are reviewed, focusing on the latest advances in graphene‐based assemblies such as films, fabrics, and composites.

⚡ This is an original paraphrased summary — not copied from the abstract. Full paper available at the source link below.

Key Findings
  • 1 Graphene‐based materials are the most promising candidates in the applications of EM wave shielding and absorption owing to their remarkable structures and enhanced EM properties.
  • 2 Designing graphene‐based materials with elaborately controlled microstructures and optimized EM properties can effectively improve EM energy attenuation and conversion.
  • 3 Herein, the study begins with the EM attenuation mechanism, and multiscale design strategies of graphene‐based EM functional materials are outlined, including molecular‐scale, micro/nanoscale structure, macroscale structure, and integration of multiscale assembly design strategies.
Why It Matters

This work deepens our understanding of the fundamental laws governing the universe, from subatomic particles to cosmic structures.

This summary is based on publicly available metadata and abstract. For the full research paper, visit the original source:

Read Full Paper at OpenAlex
More Physics & Space Science Papers ← Back to Hub 📚 Learning Hub
Article Details
Source OpenAlex
Category ⚛️ Physics & Space Science
Published Jul 1, 2022
Journal Advanced Functional Materials
DOI 10.1002/adfm.202204591
Citations 693
Authors Yuxing Xia, Weiwei Gao, Chao Gao