Promising comprehensive properties, including high permittivity, low dielectric loss, high breakdown strength, low electrical conductivity, and high thermal conductivity, are very hard to simultaneously obtain in high-frequency applicable polymer nanocomposite dielectrics. Instead of traditional electric percolation, in this work, a novel route based on a synergy between electric percolation and induced polarization has been raised to prepare 0–3 type nanocomposites with an enhanced high permittivity (high-k) property and low loss at high frequency. This work aimed at optimizing that synergy to achieve the favorable properties mentioned above in composite dielectrics used at high frequencies such as 1 MHz and 1 GHz. Conductive beta-Si...
Controlling the permittivity of dielectric composites is critical for numerous applications dealing ...
This paper is about tailoring high permittivity of multi-walled carbon nanotubes/silver nanoparticle...
Nanodielectrics, or dielectric polymer nanocomposites, can exhibit significant improvements in volta...
Promising comprehensive properties, including high permittivity, low dielectric loss, high breakdown...
Dielectric capacitor, as an essential building block, is ubiquitously used in many electronic and en...
High overall performance, including high dielectric constant, low loss, high breakdown strength, fin...
International audienceNanostructured materials based on the wide band gap semiconductor Silicon Carb...
Dielectric measurements on polyimide-oxide nanoparticle composite thin films show a composite dielec...
The conductivity mismatch in the composite insulation of high voltage direct current (HVDC) cable ac...
Although ceramic/polymer composites have been of great interest as embedded capacitor materials, the...
Extensive research is being done today on embedded capacitors because of their promising application...
The interface between the polymer and the particle has a critical role in altering the properties of...
The clustering effect of beta-SiC nanoparticles on the electrical conductivity of polypropylene matr...
SiC nanofibres produced by chemical vapour reaction technique are investigated using scanning and tr...
The effect of carbon black (CB) nanopowder on the electrical properties of polymer composite systems...
Controlling the permittivity of dielectric composites is critical for numerous applications dealing ...
This paper is about tailoring high permittivity of multi-walled carbon nanotubes/silver nanoparticle...
Nanodielectrics, or dielectric polymer nanocomposites, can exhibit significant improvements in volta...
Promising comprehensive properties, including high permittivity, low dielectric loss, high breakdown...
Dielectric capacitor, as an essential building block, is ubiquitously used in many electronic and en...
High overall performance, including high dielectric constant, low loss, high breakdown strength, fin...
International audienceNanostructured materials based on the wide band gap semiconductor Silicon Carb...
Dielectric measurements on polyimide-oxide nanoparticle composite thin films show a composite dielec...
The conductivity mismatch in the composite insulation of high voltage direct current (HVDC) cable ac...
Although ceramic/polymer composites have been of great interest as embedded capacitor materials, the...
Extensive research is being done today on embedded capacitors because of their promising application...
The interface between the polymer and the particle has a critical role in altering the properties of...
The clustering effect of beta-SiC nanoparticles on the electrical conductivity of polypropylene matr...
SiC nanofibres produced by chemical vapour reaction technique are investigated using scanning and tr...
The effect of carbon black (CB) nanopowder on the electrical properties of polymer composite systems...
Controlling the permittivity of dielectric composites is critical for numerous applications dealing ...
This paper is about tailoring high permittivity of multi-walled carbon nanotubes/silver nanoparticle...
Nanodielectrics, or dielectric polymer nanocomposites, can exhibit significant improvements in volta...