The preparation of yolk–shell microwave absorption materials with low density and excellent microwave absorption property requires reasonable design and economical manufacture. In this study, an efficient strategy without any templates or reducing gases has been designed to fabricate multi-core yolk–shell Co@C nanospheres by high temperature carbonization. The results showed that Co3O4 was completely reduced by the carbon shell to metal cobalt at temperatures above 750 °C. This unique multi-core yolk–shell structure with shell of 600 nm and multiple cores of tens of nanometers can provide sufficient interface and space to reflect and scatter electromagnetic waves. At the same time, the metal cobalt layer and carbon layer provide magnetic lo...
Effectively attenuating electromagnetic waves in the C and X band through composition and structure ...
It is still a formidable challenge to ameliorate the low-frequency electromagnetic property of conve...
Magnetic metals have attracted extensive attention in microwave absorption for comprehensive merits ...
Co@C core–shell nanospheres highly dispersed on carbon supports were rationally designed to improve ...
Co-C core-shell nanoparticles have been synthesized in large quantity (in grams) by metal-organic ch...
Yolk–shell microspheres with magnetic Fe<sub>3</sub>O<sub>4</sub> cores and hierarchical copper sili...
The combination of carbon materials and ferrite materials has recently attracted increased interest ...
Carbon nanotubes with encapsulated Co nanospheres (Co@CNTs) were prepared via a simple approach that...
FeCo-C core-shell nanoparticles with diameters of 10 - 50 nm have been fabricated on a large scale b...
Due to the increasing demand for military and commercial applications, magnetic metal-based core@she...
Lightweight, low-cost, and effective microwave-absorbing materials are important in electronics, com...
Abstract CoFe/C core–shell structured nanocomposites (CoFe@C) have been fabricated through the therm...
Electromagnetic interference (EMI) affects the proper functioning of electronic devices due to the ...
The porous and biomimetic cobalt silicate@diatomite (Co2SiO4@diatomite) was successfully synthesized...
This study demonstrates lightweight microwave absorber materials designed using polycarbonate (PC) n...
Effectively attenuating electromagnetic waves in the C and X band through composition and structure ...
It is still a formidable challenge to ameliorate the low-frequency electromagnetic property of conve...
Magnetic metals have attracted extensive attention in microwave absorption for comprehensive merits ...
Co@C core–shell nanospheres highly dispersed on carbon supports were rationally designed to improve ...
Co-C core-shell nanoparticles have been synthesized in large quantity (in grams) by metal-organic ch...
Yolk–shell microspheres with magnetic Fe<sub>3</sub>O<sub>4</sub> cores and hierarchical copper sili...
The combination of carbon materials and ferrite materials has recently attracted increased interest ...
Carbon nanotubes with encapsulated Co nanospheres (Co@CNTs) were prepared via a simple approach that...
FeCo-C core-shell nanoparticles with diameters of 10 - 50 nm have been fabricated on a large scale b...
Due to the increasing demand for military and commercial applications, magnetic metal-based core@she...
Lightweight, low-cost, and effective microwave-absorbing materials are important in electronics, com...
Abstract CoFe/C core–shell structured nanocomposites (CoFe@C) have been fabricated through the therm...
Electromagnetic interference (EMI) affects the proper functioning of electronic devices due to the ...
The porous and biomimetic cobalt silicate@diatomite (Co2SiO4@diatomite) was successfully synthesized...
This study demonstrates lightweight microwave absorber materials designed using polycarbonate (PC) n...
Effectively attenuating electromagnetic waves in the C and X band through composition and structure ...
It is still a formidable challenge to ameliorate the low-frequency electromagnetic property of conve...
Magnetic metals have attracted extensive attention in microwave absorption for comprehensive merits ...