Facile synthesis of net-like Fe3O4/MWCNTs decorated by SnO2 nanoparticles as a highly efficient microwave absorber
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- Type
- article
- Published
- 2016-10-10
- Cited by
- 36
- References
- 52
- OpenAlex
- https://openalex.org/W2528818834
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:100121508
Keywords
Nanoparticle, Microwave, Materials science, Nanocrystal, Nanotechnology
References
- 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.
- Achieving hierarchical hollow carbon@Fe@Fe3O4 nanospheres with superior microwave absorption properties and lightweight features
- Uniform Fe3O4 coating on flower-like ZnO nanostructures by atomic layer deposition for electromagnetic wave absorption.
- Preparation and microwave absorption properties of multi-walled carbon nanotubes decorated with Ni-doped SnO2 nanocrystals
- 3D Fe3O4 nanocrystals decorating carbon nanotubes to tune electromagnetic properties and enhance microwave absorption capacity
- Facile synthesis of a CNT@Fe@SiO2 ternary composite with enhanced microwave absorption performance
- Corrosive synthesis and enhanced electromagnetic absorption properties of hollow porous Ni/SnO2 hybrids.
- Synthesis and excellent electromagnetic wave absorption properties of parallel aligned FeCo@C core–shell nanoflake composites
- Graphene based metal and metal oxide nanocomposites: synthesis, properties and their applications
- Synthesis and microwave absorption property of flexible magnetic film based on graphene oxide/carbon nanotubes and Fe3O4 nanoparticles
- Making carbon nanotubes biocompatible and biodegradable.
- Microwave absorption property of aligned MWCNT/Fe3O4
- SiC–Fe3O4 dielectric–magnetic hybrid nanowires: controllable fabrication, characterization and electromagnetic wave absorption
- Size-Controllable Synthesis of Fe3O4 Nanospheres for Electromagnetic Wave Absorber
- Low temperature synthesis of Fe3O4 micro-spheres and its microwave absorption properties
- Magnetic carbon nanofibers containing uniformly dispersed Fe/Co/Ni nanoparticles as stable and high-performance electromagnetic wave absorbers
- Microwave absorption properties of core double-shell FeCo/C/BaTiO₃ nanocomposites.
- One-step preparation of single-crystalline Fe2O3 particles/graphene composite hydrogels as high performance anode materials for supercapacitors
- Multi-wall carbon nanotubes decorated with ZnO nanocrystals: mild solution-process synthesis and highly efficient microwave absorption properties at elevated temperature
Cited by
- Facile design of a ZnO nanorod–Ni core–shell composite with dual peaks to tune its microwave absorption properties
- Synthesis α-Fe2O3/SnO2@PANI ternary composites for X-band electromagnetic wave absorption
- Rational Design of Superior Microwave Shielding Composites Employing Synergy of Encapsulating Character of Alginate Hydrogels and Task-Specific Components (Ni NPs, Fe3O4/CNTs)
- Synthesis, characterization and electromagnetic wave absorption properties of asphalt carbon coated graphene/magnetic NiFe2O4 modified multi-wall carbon nanotube composites
- Fabrication of reduced graphene oxide/multi-walled carbon nanotubes/zinc ferrite hybrid composites as high-performance microwave absorbers
- Fabrication of 3D net-like MWCNTs/ZnFe2O4 hybrid composites as high-performance electromagnetic wave absorbers
- Fe3O4@SiO2 nanoparticles wrapped with polypyrrole (PPy) aerogel: A highly performance material as excellent electromagnetic absorber
- Facile preparation and microwave absorption properties of RGO/MWCNTs/ZnFe2O4 hybrid nanocomposites
- Controllable Fabrication of Fe3O4/ZnO Core–Shell Nanocomposites and Their Electromagnetic Wave Absorption Performance in the 2–18 GHz Frequency Range
- Enhanced Polarization from Hollow Cube-like ZnSnO3 Wrapped by Multiwalled Carbon Nanotubes: As a Lightweight and High-Performance Microwave Absorber.
- In-situ growth strategy to fabrication of MWCNTs/Fe3O4 with controllable interface polarization intensity and wide band electromagnetic absorption performance
- Synthesis and microwave absorbing properties of CeO2/multi-walled carbon nanotubes composites
- Synthesis of chain-like ɑ-Fe/Fe3O4 core/shell composites exhibiting enhanced microwave absorption performance in high-frequency under an ultrathin matching thickness
- Reduced graphene oxide wrapped cube-like ZnSnO3: As a high-performance microwave absorber
- Fabrication of nickel ferrite microspheres decorated multi-walled carbon nanotubes hybrid composites with enhanced electromagnetic wave absorption properties
- Thin and broadband Ce2Fe17N3-δ/MWCNTs composite absorber with efficient microwave absorption
- Conductive-network enhanced microwave absorption performance from carbon coated defect-rich Fe2O3 anchored on multi-wall carbon nanotubes
- Facile synthesis of CuS@ZnO core-shell structured composite: A lightweight material with efficient electromagnetic absorption
- Facile synthesis of cobalt-zinc ferrite microspheres decorated nitrogen-doped multi-walled carbon nanotubes hybrid composites with excellent microwave absorption in the X-band
- Magnetic-field-induced synthesis of one-dimensional core/shell Fe3O4/carbon nanorods composites as a highly efficient microwave absorber
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