Magnetic and dielectric materials can be blended to enhance absorption properties at microwave frequencies, although the materials may have relatively weak attenuation capabilities by themselves. The specific goal of this work is to enhance microwave absorption properties of materials with interesting dielectric behavior by blending them with magnetic materials based on transition metals. The synthesized Mn1−xZnxFe2O4 (x = 0.0 and 1.0) spinel ferrite nanoparticles (MZF NPs) were blended with commercial multi-walled carbon nanotubes (MWCNTs) in various proportions with a binder matrix of paraffin. This simple and efficient process did not cause a significant variation in the energy states of MWCNTs. MZF NPs were synthesized with a citric aci...
New magnetic nanocomposites based on carbon nanotubes (CNT) are very promising for high-frequency ap...
Lightweight and flexible electromagnetic shielding materials were designed by selectively localizing...
In this research work, magnetic and microwave absorption loss and other response characteristics in ...
Magnetic and dielectric materials can be blended to enhance absorption properties at microwave frequ...
Manganese zinc ferrite nanopowder was prepared by sol–gel auto combustion method. XRD analysis was c...
The enhancement of microwave absorbing properties in nickel zinc ferrite (Ni0.5Zn0.5Fe2O4) via multi...
Metal-substituted spinel ferrite-based microwave absorbing materials (MAMs) are attracting significa...
Several carbon nanotubes and spinel ferrite-based nanocomposites have been created in recent years a...
A manganese based spinel ferrite, chemically modified with polymethyl methacrylate (PMMA) and polyan...
Composites based on acrylonitrile-butadiene rubber, carbon nanotubes, and manganese-zinc ferrite wer...
The rapid growth of electronic systems and devices operating within the gigahertz (GHz) frequency ra...
In order to manufacture microwave absorbers with strong attenuation abilities and that are light wei...
Microwave absorbers derived using poly(vinylidene fluoride) (PVDF), super paramagnetic nanocrystalli...
Highly conducting polyaniline (PANI) nanocomposite with Mn0.2Ni0.4Zn0.4Fe2O4 ferrite was prepared by...
This study demonstrates lightweight microwave absorber materials designed using polycarbonate (PC) n...
New magnetic nanocomposites based on carbon nanotubes (CNT) are very promising for high-frequency ap...
Lightweight and flexible electromagnetic shielding materials were designed by selectively localizing...
In this research work, magnetic and microwave absorption loss and other response characteristics in ...
Magnetic and dielectric materials can be blended to enhance absorption properties at microwave frequ...
Manganese zinc ferrite nanopowder was prepared by sol–gel auto combustion method. XRD analysis was c...
The enhancement of microwave absorbing properties in nickel zinc ferrite (Ni0.5Zn0.5Fe2O4) via multi...
Metal-substituted spinel ferrite-based microwave absorbing materials (MAMs) are attracting significa...
Several carbon nanotubes and spinel ferrite-based nanocomposites have been created in recent years a...
A manganese based spinel ferrite, chemically modified with polymethyl methacrylate (PMMA) and polyan...
Composites based on acrylonitrile-butadiene rubber, carbon nanotubes, and manganese-zinc ferrite wer...
The rapid growth of electronic systems and devices operating within the gigahertz (GHz) frequency ra...
In order to manufacture microwave absorbers with strong attenuation abilities and that are light wei...
Microwave absorbers derived using poly(vinylidene fluoride) (PVDF), super paramagnetic nanocrystalli...
Highly conducting polyaniline (PANI) nanocomposite with Mn0.2Ni0.4Zn0.4Fe2O4 ferrite was prepared by...
This study demonstrates lightweight microwave absorber materials designed using polycarbonate (PC) n...
New magnetic nanocomposites based on carbon nanotubes (CNT) are very promising for high-frequency ap...
Lightweight and flexible electromagnetic shielding materials were designed by selectively localizing...
In this research work, magnetic and microwave absorption loss and other response characteristics in ...