The goal of the “DecompNOx” project is the formulation of supported Au-(noble metal) bimetallic nanoalloys active for NO decomposition below 500°C. We have already published four articles presenting our results. Monometallic (Au, Pd and Pt) and bimetallic nanoparticles were prepared using several supports (SiO2, LTA and Al2O3). SiO2 and LTA-based catalysts were investigated for the deNOx activity. Alumina-based samples (previously prepared, characterized and tested for NO decomposition by my colleague Ranin ATWI) were investigated for the CO adsorption/desorption kinetics. For Pd-Au/SiO2, the alloying enhanced and stabilized the deNOx catalytic activity of Pd, though decreased N2 selectivity. For Pt-Au@LTA, the samples displayed deactivatio...
New bimetallic Ni-Au supported nanoparticle catalysts were prepared by using dendrimer templated nan...
The catalytic and structural properties of five different nanoparticle catalysts with varying Au/Ni ...
The catalytic and structural properties of five different nanoparticle catalysts with varying Au/Ni ...
La décomposition directe du NO en N2 et O2 constitue la solution la plus intéressante pour éliminer ...
RX+ING+TEG:FRM:ATU:YSC:FBSInternational audienceNOx direct decomposition over noble metals is thermo...
MICROSCOPIE:RX+ING+TEG:ATU:LBU:FBS:YSC:FRMNational audienceThe direct decomposition of NOx at modera...
Polyamidoamine (PAMAM) dendrimers were used to template Pt, Au, and bimetallic Pt–Au dendrimer encap...
Bimetallic AuPd nanoparticles supported on TiO2 are known to catalyze the reduction of NO with CO. H...
Highly dispersed and well-homogenized Au–Pd alloy nanoparticles with average particle sizes of ∼2 nm...
Along with the intensive research in gold catalysis, gold-containing bimetallic nanoparticles have a...
L'or, un métal aux propriétés versatiles en catalyse, est pour l'instant sous-exploité en raison de ...
Bimetallic dendrimer-stabilized nanoparticles (DSNs) were used to prepare supported Pt-Au catalysts ...
Pd-Mo and Mo-Pd bimetallic catalysts supported on Al2O3-thin-layer-modified SiO2 and Si-MCM-41 were ...
The catalytic performance of Pd–In–Au/TiO2 was studied for the reduction of nitrites and nitrates in...
L’or, un métal aux propriétés versatiles en catalyse, est pour l’instant sous-exploité en raison de ...
New bimetallic Ni-Au supported nanoparticle catalysts were prepared by using dendrimer templated nan...
The catalytic and structural properties of five different nanoparticle catalysts with varying Au/Ni ...
The catalytic and structural properties of five different nanoparticle catalysts with varying Au/Ni ...
La décomposition directe du NO en N2 et O2 constitue la solution la plus intéressante pour éliminer ...
RX+ING+TEG:FRM:ATU:YSC:FBSInternational audienceNOx direct decomposition over noble metals is thermo...
MICROSCOPIE:RX+ING+TEG:ATU:LBU:FBS:YSC:FRMNational audienceThe direct decomposition of NOx at modera...
Polyamidoamine (PAMAM) dendrimers were used to template Pt, Au, and bimetallic Pt–Au dendrimer encap...
Bimetallic AuPd nanoparticles supported on TiO2 are known to catalyze the reduction of NO with CO. H...
Highly dispersed and well-homogenized Au–Pd alloy nanoparticles with average particle sizes of ∼2 nm...
Along with the intensive research in gold catalysis, gold-containing bimetallic nanoparticles have a...
L'or, un métal aux propriétés versatiles en catalyse, est pour l'instant sous-exploité en raison de ...
Bimetallic dendrimer-stabilized nanoparticles (DSNs) were used to prepare supported Pt-Au catalysts ...
Pd-Mo and Mo-Pd bimetallic catalysts supported on Al2O3-thin-layer-modified SiO2 and Si-MCM-41 were ...
The catalytic performance of Pd–In–Au/TiO2 was studied for the reduction of nitrites and nitrates in...
L’or, un métal aux propriétés versatiles en catalyse, est pour l’instant sous-exploité en raison de ...
New bimetallic Ni-Au supported nanoparticle catalysts were prepared by using dendrimer templated nan...
The catalytic and structural properties of five different nanoparticle catalysts with varying Au/Ni ...
The catalytic and structural properties of five different nanoparticle catalysts with varying Au/Ni ...