After several decades of oblivious fossil resources consumption, humanity is now facing major issues regarding global warming and energy production and storage. In the double context of intermittent renewable energy storage and CO2 recovery, the power-to-gas approach, and especially the Sabatier reaction (catalytic hydrogenation of carbon dioxide to methane + water) is of special interest. The main goal of this thesis is to perform the Sabatier reaction using magnetically activated nano-catalysts. The use of magnetic nanoparticles to convert electromagnetic energy into heat is indeed an approach of growing interest in catalysis, even if the field of biomedicine obviously concentrate most of the applications (magnetic hyperthermia, drug deli...
Magnetic hyperthermia (MH) shows great potential in clinical applications because of its very locali...
International audienceHeating magnetic nanoparticles with high frequency magnetic fields is a topic ...
International audienceA magnetically induced catalysis can be promoted taking advantage of optimal h...
After several decades of oblivious fossil resources consumption, humanity is now facing major issues...
International audienceThe use of magnetic nanoparticles to convert electromagnetic energy into heat ...
The depletion of fossil-based energy together with the increase of greenhouse gases emissions incite...
International audienceMagnetic nanoparticles heve recently been used as heating agents in heterogene...
Magnetically induced catalysis using magnetic nanoparticles (MagNPs) as heating agents is a new effi...
International audienceThe carbidization of Fe(0) nanoparticles (NPs) under syngas (CO/H2) produces c...
Heterogeneous catalytic reactions require often very harsh conditions, i.e. high temperature and hig...
International audienceMagnetic heating by nanoparticles has recently been successfully employed in h...
International audienceMagnetically induced catalysis using magnetic nanoparticles (MagNPs) as heatin...
International audienceInduction heating of magnetic nanoparticles (NPs) has been recently explored a...
Magnetic hyperthermia (MH) shows great potential in clinical applications because of its very locali...
International audienceHeating magnetic nanoparticles with high frequency magnetic fields is a topic ...
International audienceA magnetically induced catalysis can be promoted taking advantage of optimal h...
After several decades of oblivious fossil resources consumption, humanity is now facing major issues...
International audienceThe use of magnetic nanoparticles to convert electromagnetic energy into heat ...
The depletion of fossil-based energy together with the increase of greenhouse gases emissions incite...
International audienceMagnetic nanoparticles heve recently been used as heating agents in heterogene...
Magnetically induced catalysis using magnetic nanoparticles (MagNPs) as heating agents is a new effi...
International audienceThe carbidization of Fe(0) nanoparticles (NPs) under syngas (CO/H2) produces c...
Heterogeneous catalytic reactions require often very harsh conditions, i.e. high temperature and hig...
International audienceMagnetic heating by nanoparticles has recently been successfully employed in h...
International audienceMagnetically induced catalysis using magnetic nanoparticles (MagNPs) as heatin...
International audienceInduction heating of magnetic nanoparticles (NPs) has been recently explored a...
Magnetic hyperthermia (MH) shows great potential in clinical applications because of its very locali...
International audienceHeating magnetic nanoparticles with high frequency magnetic fields is a topic ...
International audienceA magnetically induced catalysis can be promoted taking advantage of optimal h...