Metallic nanoparticles (NPs) have many applications in catalysis. Some of them (gold, silver, copper) have a visible absorption resulting from the excitation of the surface plasmon by an external electromagnetic field. In this project, we propose to couple the catalytic properties of gold-based nanoparticles with their plasmon resonance properties in order to assist the catalytic reaction, in particular by the resulting thermal effect. This plasmon-assisted catalysis approach is general and can be used for a variety of exothermic and endothermic catalytic processes involving nanoparticles. This plasmon-assisted catalysis will make it possible to carry out catalytic reactions at lower energy cost under solar light.Les nanoparticules (NPs) mé...
Metal nanoparticle photocatalysts have attracted recent interest due to their strong absorption of v...
The harvesting of solar light is one of the main challenges in science. The outstanding optical prop...
Metal nanoparticles (NPs) have emerged as a kind of new photocatalyst to drive various chemical reac...
Metallic nanoparticles (NPs) have many applications in catalysis. Some of them (gold, silver, copper...
Light absorption in plasmonic nanoantennas constitutes an interesting way of enhancing catalytic rea...
Scientists are encouraged to produce clean and sustainable energies now that they are aware of the e...
Noble metals have recently been shown to drive direct photocatalytic reactions in which they both pr...
We introduce a new method for performing and miniaturizing many types of heterogeneous catalysis inv...
Grâce à ses propriétés optiques originales, une NanoParticule d’Or (NPO) excitée peut se comporter c...
Plasmonic is an emerging field which has showed application for photocatlysis. Here we investigate a...
Plasmonic metal nanoparticles absorb light energy and release the energy through radiative or nonrad...
Les nanopartícules de metalls nobles com l’or presenten propietats òptiques sing...
Noble metal nanostructures are exceptional light absorbing systems, in which electron–hole pai...
Plasmonic photocatalysis represents the synergetic union of two active fields of research: plasmonic...
Heterogenous catalysis is an important technology used to facilitate chemical transformations. As in...
Metal nanoparticle photocatalysts have attracted recent interest due to their strong absorption of v...
The harvesting of solar light is one of the main challenges in science. The outstanding optical prop...
Metal nanoparticles (NPs) have emerged as a kind of new photocatalyst to drive various chemical reac...
Metallic nanoparticles (NPs) have many applications in catalysis. Some of them (gold, silver, copper...
Light absorption in plasmonic nanoantennas constitutes an interesting way of enhancing catalytic rea...
Scientists are encouraged to produce clean and sustainable energies now that they are aware of the e...
Noble metals have recently been shown to drive direct photocatalytic reactions in which they both pr...
We introduce a new method for performing and miniaturizing many types of heterogeneous catalysis inv...
Grâce à ses propriétés optiques originales, une NanoParticule d’Or (NPO) excitée peut se comporter c...
Plasmonic is an emerging field which has showed application for photocatlysis. Here we investigate a...
Plasmonic metal nanoparticles absorb light energy and release the energy through radiative or nonrad...
Les nanopartícules de metalls nobles com l’or presenten propietats òptiques sing...
Noble metal nanostructures are exceptional light absorbing systems, in which electron–hole pai...
Plasmonic photocatalysis represents the synergetic union of two active fields of research: plasmonic...
Heterogenous catalysis is an important technology used to facilitate chemical transformations. As in...
Metal nanoparticle photocatalysts have attracted recent interest due to their strong absorption of v...
The harvesting of solar light is one of the main challenges in science. The outstanding optical prop...
Metal nanoparticles (NPs) have emerged as a kind of new photocatalyst to drive various chemical reac...