Homogenously dispersed nanoparticles having a magnetic core and graphitic-carbon shells in amorphous carbon globules are prepared using a low-cost pyrolysis technique. Synergetic microwave absorption in carbon globules embedded with nanoscale iron/iron-carbide graphite (FeC) particles via dielectric, magnetic and Ohmic losses is emphasized in this work. The electromagnetic interference (EMI) shielding properties of the FeC nanoparticles dispersed in polyvinylidene fluoride (PVDF) are studied in the 8-18 GHz frequency range and compared with those of PVDF composites containing similar weight fractions of conducting/magnetic phase micro-particles such as carbonyl iron (CI) or electrolytic iron (EI) or a similar amount of amorphous carbon phas...
Electromagnetic interference (EMI) shielding refers to the ability of a material to block the EM wav...
The influence of nitrogen doping in pyrolysis-derived carbonaceous nanostructures with embedded Co-n...
Development of high-strength, lightweight materials for electromagnetic interference (EMI) shielding...
Homogenously dispersed nanoparticles having a magnetic core and graphitic-carbon shells in amorphous...
In this study, carbon black and/or graphite incorporated with polyvinylidene difluoride (PVDF) compo...
Iron encapsulated carbon nanoparticle polyvinyl chloride composite films have been prepared by sol...
In this paper, the low temperature electrical conductivity and microwave absorption properties of ca...
Epoxy composites with different amounts of magnetite nanoparticles, carbon nanofibres (CNF) and magn...
To improve electromagnetic (EM) shielding and especially absorption of carbon fibre reinforced polym...
Portable gadgets and electronic devices are pervasive in any modern society today. However, these de...
In this study, soft magnetic metal was coated on carbon fibers (CFs) using an electroless FeCoNi-pla...
The scope of this research is to investigate generation and use of new “composite” nanoparticles, in...
Hybridizing carbon materials with magnetic metals and oxides has attracted much attention for enhanc...
This study demonstrates lightweight microwave absorber materials designed using polycarbonate (PC) n...
Spherical Fe nanoparticles (FeNPs) with diameter of similar to 100 nm were prepared by evaporating c...
Electromagnetic interference (EMI) shielding refers to the ability of a material to block the EM wav...
The influence of nitrogen doping in pyrolysis-derived carbonaceous nanostructures with embedded Co-n...
Development of high-strength, lightweight materials for electromagnetic interference (EMI) shielding...
Homogenously dispersed nanoparticles having a magnetic core and graphitic-carbon shells in amorphous...
In this study, carbon black and/or graphite incorporated with polyvinylidene difluoride (PVDF) compo...
Iron encapsulated carbon nanoparticle polyvinyl chloride composite films have been prepared by sol...
In this paper, the low temperature electrical conductivity and microwave absorption properties of ca...
Epoxy composites with different amounts of magnetite nanoparticles, carbon nanofibres (CNF) and magn...
To improve electromagnetic (EM) shielding and especially absorption of carbon fibre reinforced polym...
Portable gadgets and electronic devices are pervasive in any modern society today. However, these de...
In this study, soft magnetic metal was coated on carbon fibers (CFs) using an electroless FeCoNi-pla...
The scope of this research is to investigate generation and use of new “composite” nanoparticles, in...
Hybridizing carbon materials with magnetic metals and oxides has attracted much attention for enhanc...
This study demonstrates lightweight microwave absorber materials designed using polycarbonate (PC) n...
Spherical Fe nanoparticles (FeNPs) with diameter of similar to 100 nm were prepared by evaporating c...
Electromagnetic interference (EMI) shielding refers to the ability of a material to block the EM wav...
The influence of nitrogen doping in pyrolysis-derived carbonaceous nanostructures with embedded Co-n...
Development of high-strength, lightweight materials for electromagnetic interference (EMI) shielding...