Control of the microscopic structure of CNT nanocomposites allows modulation of the electromagnetic shielding in the gigahertz range. The porosity of CNT scaffolds has been controlled by two freezing protocols and a subsequent lyophilization step: fast freezing in liquid nitrogen and slow freezing at −20 °C. Mercury porosimetry shows that slowly frozen specimens present a more open pore size (100–150 μm) with a narrow distribution whereas specimens frozen rapidly show a smaller pore size and a heterogeneous distribution. 3D-scaffolds containing 3, 4, 6 and 7% CNT were infiltrated with epoxy and specimens with 2, 5 and 8 mm thicknesses were characterized in the GHz range. Samples with the highest pore size and porosity presented the lowest r...
Many types of electromagnetic (EM) absorbers have been developed to convert EM energy into heat and ...
Carbon nanotubes are effective nanomodifiers – providing the formation of a variety of thermal and e...
Ultra-light carboxylic functionalized multi-walled carbon nanotubes (CNTs-COOH) and Ti3C2 MXene hybr...
Control of the microscopic structure of CNT nanocomposites allows modulation of the electromagnetic ...
The design of microwave absorbing materials requires low reflection and high absorption of radiation...
The use of carbon nanotubes (CNT’s) in an alumina ceramic matrix is experimentally studied. The weig...
Following the development of the new electronic systems and communication networks, the levels of e...
Multiwalled carbon nanotube/polymer composites with aligned and isotropic micropores are constructed...
A novel technique for millimeter wave absorber material embedded in a metal waveguide is proposed. T...
With an emergent need to miniaturize multifunctional radio frequency architectures, efficient design...
International audienceIn this paper, we present a microwave absorber based on carbon nanotubes (CNT)...
A novel technique for millimeter wave absorber material embedded in a metal waveguide is proposed. T...
Carbon nanotubes with encapsulated Co nanospheres (Co@CNTs) were prepared via a simple approach that...
The development of high-frequency devices has attracted more research interest in electromagnetic wa...
Carbon nanotube reinforced polymer foams filling a metallic honeycomb were processed and characteriz...
Many types of electromagnetic (EM) absorbers have been developed to convert EM energy into heat and ...
Carbon nanotubes are effective nanomodifiers – providing the formation of a variety of thermal and e...
Ultra-light carboxylic functionalized multi-walled carbon nanotubes (CNTs-COOH) and Ti3C2 MXene hybr...
Control of the microscopic structure of CNT nanocomposites allows modulation of the electromagnetic ...
The design of microwave absorbing materials requires low reflection and high absorption of radiation...
The use of carbon nanotubes (CNT’s) in an alumina ceramic matrix is experimentally studied. The weig...
Following the development of the new electronic systems and communication networks, the levels of e...
Multiwalled carbon nanotube/polymer composites with aligned and isotropic micropores are constructed...
A novel technique for millimeter wave absorber material embedded in a metal waveguide is proposed. T...
With an emergent need to miniaturize multifunctional radio frequency architectures, efficient design...
International audienceIn this paper, we present a microwave absorber based on carbon nanotubes (CNT)...
A novel technique for millimeter wave absorber material embedded in a metal waveguide is proposed. T...
Carbon nanotubes with encapsulated Co nanospheres (Co@CNTs) were prepared via a simple approach that...
The development of high-frequency devices has attracted more research interest in electromagnetic wa...
Carbon nanotube reinforced polymer foams filling a metallic honeycomb were processed and characteriz...
Many types of electromagnetic (EM) absorbers have been developed to convert EM energy into heat and ...
Carbon nanotubes are effective nanomodifiers – providing the formation of a variety of thermal and e...
Ultra-light carboxylic functionalized multi-walled carbon nanotubes (CNTs-COOH) and Ti3C2 MXene hybr...