The specific nanostructure of the absorber is a key factor in improving the electromagnetic absorption performance. Herein, NiFe layered double hydroxide composited with carbonyl iron powder (LDH/CIP) was fabricated by a one-step hydrothermal synthesis process for the first time. By varying the morphology of the CIP template (spherical or flaky), the nanostructure of in situ grown LDH could be modulated, to optimize the electromagnetic wave absorption performance of LDH. The resultant NiFe/CIP synergistic composite has proved its excellent electromagnetic (EM) wave absorption performance with the minimum reflection loss (RLmin) of −96.5 dB and an effective absorption bandwidth (EAB) up to 7.6 GHz at the thickness of 8 mm. At a smaller thick...
Microwave absorbing coatings composed of Co-Ferrite particles and carbonyl iron particles (CIP) as a...
NiCo/(Ni,Co)O/(Ni,Co)Fe2O4 composites were in-situ prepared by solution combustion method using meta...
Herein, two distinct nanocomposites of CaTiO3 micro-cubes and polygonal SrFe12O19, both decorated wi...
Microwave-absorbing materials have attracted increased research interest in recent years because of ...
In this work, a novel core-shell structure material, NiFe layered double hydroxide (NiFe LDH) loaded...
Spherical Fe nanoparticles (FeNPs) with diameter of similar to 100 nm were prepared by evaporating c...
In this work, spherical flower-shaped composite carbonyl iron powder@MnO2 (CIP@MnO2) with CIP as the...
In the present paper, a microwave absorber with nanoscale gradient structure was proposed for enhanc...
Materials with strong magnetic property that can provide excellent microwave absorption performance ...
The hydrothermal method was used to dope different amounts of Co2+, Mn2+, and Cu2+ in nano-nickel zi...
Microwave absorption properties were systematically studied for double-layer carbon black/epoxy resi...
Abstract Layered double hydroxides (LDHs) have a special structure and atom composition, which are e...
Nanocomposite absorbers based on dielectric/magnetic materials are prepared by in situ incorporation...
Microwave absorption properties were systematically studied for double-layer carbon black/epoxy resi...
This work reports for the first time the synthesis of a HfO2-coated Ti3C2Tx MXene sandwich-like nano...
Microwave absorbing coatings composed of Co-Ferrite particles and carbonyl iron particles (CIP) as a...
NiCo/(Ni,Co)O/(Ni,Co)Fe2O4 composites were in-situ prepared by solution combustion method using meta...
Herein, two distinct nanocomposites of CaTiO3 micro-cubes and polygonal SrFe12O19, both decorated wi...
Microwave-absorbing materials have attracted increased research interest in recent years because of ...
In this work, a novel core-shell structure material, NiFe layered double hydroxide (NiFe LDH) loaded...
Spherical Fe nanoparticles (FeNPs) with diameter of similar to 100 nm were prepared by evaporating c...
In this work, spherical flower-shaped composite carbonyl iron powder@MnO2 (CIP@MnO2) with CIP as the...
In the present paper, a microwave absorber with nanoscale gradient structure was proposed for enhanc...
Materials with strong magnetic property that can provide excellent microwave absorption performance ...
The hydrothermal method was used to dope different amounts of Co2+, Mn2+, and Cu2+ in nano-nickel zi...
Microwave absorption properties were systematically studied for double-layer carbon black/epoxy resi...
Abstract Layered double hydroxides (LDHs) have a special structure and atom composition, which are e...
Nanocomposite absorbers based on dielectric/magnetic materials are prepared by in situ incorporation...
Microwave absorption properties were systematically studied for double-layer carbon black/epoxy resi...
This work reports for the first time the synthesis of a HfO2-coated Ti3C2Tx MXene sandwich-like nano...
Microwave absorbing coatings composed of Co-Ferrite particles and carbonyl iron particles (CIP) as a...
NiCo/(Ni,Co)O/(Ni,Co)Fe2O4 composites were in-situ prepared by solution combustion method using meta...
Herein, two distinct nanocomposites of CaTiO3 micro-cubes and polygonal SrFe12O19, both decorated wi...