Many types of electromagnetic (EM) absorbers have been developed to convert EM energy into heat and to absorb EM waves. However, multilayer EM absorbers are complicated to design, fabricate and dispose of. In this work, we present a simple and scalable design method to achieve a single-layer electromagnetic absorber with a high absorption coefficient in a wide range of frequency bands. On the basis of the design, we develop two types of non-woven fabrics with high porosity in which the fibres are coated with multi-walled carbon nanotubes (MWCNTs). The absorption coefficients exceed 0.9 for the 5-mm-thick MWCNT-coated non-woven fabric measured in the 50-67 GHz range. An absorption coefficient of 0.94 at 5.8 GHz is expected to be obtained by ...
The demand for multifunctional requirements in aerospace, military, automobile, sports, and energy a...
In the ongoing search for new materials for microwave absorption applications, carbon nanotubes (CNT...
In this paper, we present the design of nanostructured multilayer absorbers, carried out with the ai...
Electromagnetic radiation can cause serious harm to the human body, such as the rise in body tempera...
Double-layer structure absorbing materials based on the impedance matching principle and transmissio...
357-365In the present study, the inherent characteristic of carbon nanotubes to absorb/attenuate t...
In the ongoing search for new materials for microwave absorption applications, carbon nanotubes (CNT...
The development of high-frequency devices has attracted more research interest in electromagnetic wa...
A multilayered foamed nanocomposite with graded concentration of carbon nanotubes is proposed as a n...
In this paper presents nano-composites based on polyester (PE) matrix with multi-walled carbon nanot...
International audienceIn this paper, we present a microwave absorber based on carbon nanotubes (CNT)...
Multiwalled carbon nanotubes (MWCNTs)/Fe, MWCNTs/Co, and MWCNTs/Ni nanopowders have been prepared co...
The response of materials to impinging electromagnetic waves is mainly determined by their dielectri...
Multiphase composite materials filled with multiwall carbon nanotubes (MWCNTs), short nickel-coated ...
Phenol formaldehyde resin (PFR) based composites with multiwalled carbon nanotube (MWCNT) additives ...
The demand for multifunctional requirements in aerospace, military, automobile, sports, and energy a...
In the ongoing search for new materials for microwave absorption applications, carbon nanotubes (CNT...
In this paper, we present the design of nanostructured multilayer absorbers, carried out with the ai...
Electromagnetic radiation can cause serious harm to the human body, such as the rise in body tempera...
Double-layer structure absorbing materials based on the impedance matching principle and transmissio...
357-365In the present study, the inherent characteristic of carbon nanotubes to absorb/attenuate t...
In the ongoing search for new materials for microwave absorption applications, carbon nanotubes (CNT...
The development of high-frequency devices has attracted more research interest in electromagnetic wa...
A multilayered foamed nanocomposite with graded concentration of carbon nanotubes is proposed as a n...
In this paper presents nano-composites based on polyester (PE) matrix with multi-walled carbon nanot...
International audienceIn this paper, we present a microwave absorber based on carbon nanotubes (CNT)...
Multiwalled carbon nanotubes (MWCNTs)/Fe, MWCNTs/Co, and MWCNTs/Ni nanopowders have been prepared co...
The response of materials to impinging electromagnetic waves is mainly determined by their dielectri...
Multiphase composite materials filled with multiwall carbon nanotubes (MWCNTs), short nickel-coated ...
Phenol formaldehyde resin (PFR) based composites with multiwalled carbon nanotube (MWCNT) additives ...
The demand for multifunctional requirements in aerospace, military, automobile, sports, and energy a...
In the ongoing search for new materials for microwave absorption applications, carbon nanotubes (CNT...
In this paper, we present the design of nanostructured multilayer absorbers, carried out with the ai...