Broadband and Tunable High‐Performance Microwave Absorption of an Ultralight and Highly Compressible Graphene Foam
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Summary
The broadband and tunable high-performance microwave absorption properties of an ultralight and highly compressible graphene foam (GF) are investigated and it is shown that via physical compression, the microwave absorption performance can be tuned.
- Type
- article
- Published
- 2015-03-01
- Cited by
- 1,765
- References
- 41
- OpenAlex
- https://openalex.org/W2093630040
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:205259422
Keywords
Materials science, Broadband, Microwave, Graphene, Absorption (acoustics)
References
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- Stacked polypyrrole-coated non-woven fabric sheets for absorbing electromagnetic waves with extremely high frequencies
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- Magnetic and Microwave Absorbing Properties of Electrospun Ba(1−x)LaxFe12O19 Nanofibers
- Hierarchical magnetic yolk–shell microspheres with mixed barium silicate and barium titanium oxide shells for microwave absorption enhancement
- Quaternary nanocomposites consisting of graphene, Fe3O4@Fe core@shell, and ZnO nanoparticles: synthesis and excellent electromagnetic absorption properties.
- Microwave absorbing properties of a thermally reduced graphene oxide/nitrile butadiene rubber composite
Cited by
- Controlled Gelation of Graphene Towards Unprecedented Superstructures.
- Boron carbide composites with highly aligned graphene nanoplatelets: light-weight and efficient electromagnetic interference shielding materials at high temperatures
- Performance Optimization Engineering of Multicomponent Absorbing Materials Based on Machine Learning.
- Large-scale solvent-thermal synthesis of graphene/magnetite/conductive oligomer ternary composites for microwave absorption
- Facile Synthesis of Novel Heterostructure Based on SnO2 Nanorods Grown on Submicron Ni Walnut with Tunable Electromagnetic Wave Absorption Capabilities.
- Multiscale Assembly of Grape-Like Ferroferric Oxide and Carbon Nanotubes: A Smart Absorber Prototype Varying Temperature to Tune Intensities.
- Uniform Fe3O4 coating on flower-like ZnO nanostructures by atomic layer deposition for electromagnetic wave absorption.
- Preparation of flexible reduced graphene oxide/poly(vinyl alcohol) film with superior microwave absorption properties
- In situ synthesis of novel urchin-like ZnS/Ni3S2@Ni composite with a core–shell structure for efficient electromagnetic absorption
- Preparation and microwave absorption properties of uniform TiO2@C core–shell nanocrystals
- Corrosive synthesis and enhanced electromagnetic absorption properties of hollow porous Ni/SnO2 hybrids.
- Highly Compressible and All‐Solid‐State Supercapacitors Based on Nanostructured Composite Sponge
- Nd doping of bismuth ferrite to tune electromagnetic properties and increase microwave absorption by magnetic–dielectric synergy
- High-performance microwave absorption of flexible nanocomposites based on flower-like Co superstructures and polyvinylidene fluoride
- Ultrathin graphene: electrical properties and highly efficient electromagnetic interference shielding
- High-efficiency and dynamic stable electromagnetic wave attenuation for La doped bismuth ferrite at elevated temperature and gigahertz frequency
- Fabrication of Fe3O4@SiO2@RGO nanocomposites and their excellent absorption properties with low filler content
- Enhanced permittivity and multi-region microwave absorption of nanoneedle-like ZnO in the X-band at elevated temperature
- Excellent electromagnetic interference shielding and mechanical properties of high loading carbon- nanotubes/polymer composites designed using melt recirculation equipped twin-screw extruder
- Enhanced Electromagnetic Wave Absorption Properties of Poly(3,4-ethylenedioxythiophene) Nanofiber-Decorated Graphene Sheets by Non-covalent Interactions
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