International audienceCarbon-encapsulated ferromagnetic Cobalt nanoparticles (Co@C) have been synthesized by catalytic chemical vapour deposition (CCVD). The nanoparticles, mainly ranging between 10 and 15 nm, are tightly encapsulated by 2–3 concentric graphitic carbon shells and protected from oxidation. Because of their magnetic properties (saturation magnetization of 106 emu/g and a coercivity HC of 250 Oe), Co@C nanoparticles have been investigated for hyperthermia application. Although the observed values of the specific absorption rate (28.7 W/gCo@C at 30 kA/m and 215.4 W/gCo@C at 70 kA/m) are slightly lower than required in actual hyperthermia therapies, the observed strong heating effect provides a very promising starting point for ...
International audienceMagnetic nanoparticles have attracted attention because of their current and p...
Keynote at the 1st International Symposium on Nanoparticles/Nanomaterials and Applications, which to...
We synthesized onion-like carbon-encapsulated Co, Ni, and Fe (Co-C, Ni-C, and Fe-C) magnetic nanopar...
Carbon-encapsulated ferromagnetic Cobalt nanoparticles (Co@C) have been synthesized by catalytic che...
Carbon-protected magnetic nanoparticles exhibit long-term stability in acid or alkaline medium, good...
Cobalt nanoparticles (CoNPs) are promising nanomaterials with exceptional catalytic magnetic, electr...
Communication: Carbon-encapsulated cobalt nanoparticles are prepared over a range of temperatures an...
Magnetic fluid hyperthermia is a potential therapy for achieving interstitial hyperthermia and is cu...
There are described nanoparticles of magnetic metal oxides employable in constructs consisting in po...
Co-C core-shell nanoparticles have been synthesized in large quantity (in grams) by metal-organic ch...
Nanomaterial research has attracted a great deal of enthusiasm from the public because of the applic...
A new type of Co-C nanoparticles is synthesized from CH2Cl2 solution of Co4(CO)12 by heating up to ...
Magnetic nanoparticles are of great importance particularly in the field of biomedicine as well as n...
AbstractMagnetic nanoparticles are of great importance particularly in the field of biomedicine as w...
We succeeded in the arc-plasma synthesis of carbon-encapsulated Fe, Cr, and Mn-based nanoparticles. ...
International audienceMagnetic nanoparticles have attracted attention because of their current and p...
Keynote at the 1st International Symposium on Nanoparticles/Nanomaterials and Applications, which to...
We synthesized onion-like carbon-encapsulated Co, Ni, and Fe (Co-C, Ni-C, and Fe-C) magnetic nanopar...
Carbon-encapsulated ferromagnetic Cobalt nanoparticles (Co@C) have been synthesized by catalytic che...
Carbon-protected magnetic nanoparticles exhibit long-term stability in acid or alkaline medium, good...
Cobalt nanoparticles (CoNPs) are promising nanomaterials with exceptional catalytic magnetic, electr...
Communication: Carbon-encapsulated cobalt nanoparticles are prepared over a range of temperatures an...
Magnetic fluid hyperthermia is a potential therapy for achieving interstitial hyperthermia and is cu...
There are described nanoparticles of magnetic metal oxides employable in constructs consisting in po...
Co-C core-shell nanoparticles have been synthesized in large quantity (in grams) by metal-organic ch...
Nanomaterial research has attracted a great deal of enthusiasm from the public because of the applic...
A new type of Co-C nanoparticles is synthesized from CH2Cl2 solution of Co4(CO)12 by heating up to ...
Magnetic nanoparticles are of great importance particularly in the field of biomedicine as well as n...
AbstractMagnetic nanoparticles are of great importance particularly in the field of biomedicine as w...
We succeeded in the arc-plasma synthesis of carbon-encapsulated Fe, Cr, and Mn-based nanoparticles. ...
International audienceMagnetic nanoparticles have attracted attention because of their current and p...
Keynote at the 1st International Symposium on Nanoparticles/Nanomaterials and Applications, which to...
We synthesized onion-like carbon-encapsulated Co, Ni, and Fe (Co-C, Ni-C, and Fe-C) magnetic nanopar...