Iron carbide (Fe3C) is a ceramic magnetic material with high potential for applications in different fields, including catalysis, medicine imaging, coatings, and sensors. Despite its interesting properties, it is still somehow largely unexplored, probably due to challenging synthetic conditions. In this contribution, we present a sol-gel-based method that allows preparing different Fe3C@C nanocomposites with tailored properties for specific applications, in particular, we have focused on and discussed potential uses for adsorption of noxious gas and waste removal. Nanocomposites were prepared using readily available and “green„ sources, such as urea, simple and complex sugars, and chitosan. The nanocomposite prepared from chitos...
Magnetic Fe3O4, Fe and Fe/Pd nanoparticles embedded within the pores of activated carbon fabrics (AC...
A new kind of magnetic mesoporous Fe7Co3/carbon nanocomposite has been successfully synthesized for ...
In this article, we report a facile, one-pot route to phase-pure Fe3C nanoparticles (mean diameter =...
Iron carbide (Fe₃C) is a ceramic magnetic material with high potential for applications in different...
Mesoporous carbon with embedded iron carbide nanoparticles was successfully synthesized via a facile...
A new kind of magnetic porous FeCo/carbon nanocomposites was successfully synthesized by using a fac...
Magnetic carbon nanocomposites (α-Fe/Fe3C@C) synthesized employing fructose and Fe3O4 magnetite nano...
A facile co-gelation route has been developed to synthesize novel porous Fe7Co3/carbon composites wi...
Nitrogen-doped carbon nanotubes encapsulating iron carbide (Fe3C) nanocrystals (Fe3C@NCNT) were fabr...
Nowadays, the scientific interest is focused more and more on the development of new strategies in r...
Spherical iron-carbon nanocomposites were developed through a facile aerosol-based process with sucr...
Carbon-encapsulated Fe-C (Fe-C@C) nanoparticles with a divergently flower-like morphology were succe...
In this work, a catalytic CVD process using ethanol as carbon source was used to convert an iron ric...
The development of advanced carbon nanomaterials that can efficiently extract pollutants from soluti...
Magnetic carbon nanoadsorbents fabricated by using cellulose and Fe(NO3)3 as the carbon and iron pre...
Magnetic Fe3O4, Fe and Fe/Pd nanoparticles embedded within the pores of activated carbon fabrics (AC...
A new kind of magnetic mesoporous Fe7Co3/carbon nanocomposite has been successfully synthesized for ...
In this article, we report a facile, one-pot route to phase-pure Fe3C nanoparticles (mean diameter =...
Iron carbide (Fe₃C) is a ceramic magnetic material with high potential for applications in different...
Mesoporous carbon with embedded iron carbide nanoparticles was successfully synthesized via a facile...
A new kind of magnetic porous FeCo/carbon nanocomposites was successfully synthesized by using a fac...
Magnetic carbon nanocomposites (α-Fe/Fe3C@C) synthesized employing fructose and Fe3O4 magnetite nano...
A facile co-gelation route has been developed to synthesize novel porous Fe7Co3/carbon composites wi...
Nitrogen-doped carbon nanotubes encapsulating iron carbide (Fe3C) nanocrystals (Fe3C@NCNT) were fabr...
Nowadays, the scientific interest is focused more and more on the development of new strategies in r...
Spherical iron-carbon nanocomposites were developed through a facile aerosol-based process with sucr...
Carbon-encapsulated Fe-C (Fe-C@C) nanoparticles with a divergently flower-like morphology were succe...
In this work, a catalytic CVD process using ethanol as carbon source was used to convert an iron ric...
The development of advanced carbon nanomaterials that can efficiently extract pollutants from soluti...
Magnetic carbon nanoadsorbents fabricated by using cellulose and Fe(NO3)3 as the carbon and iron pre...
Magnetic Fe3O4, Fe and Fe/Pd nanoparticles embedded within the pores of activated carbon fabrics (AC...
A new kind of magnetic mesoporous Fe7Co3/carbon nanocomposite has been successfully synthesized for ...
In this article, we report a facile, one-pot route to phase-pure Fe3C nanoparticles (mean diameter =...