We tailored the size distribution of Pt nanoparticles (NPs) on graphene nanoplatelets at a given metal loading by using low-temperature atomic layer deposition carried out in a fluidized bed reactor operated at atmospheric pressure. The Pt NPs deposited at low temperature (100 °C) after 10 cycles were more active and stable towards the propene oxidation reaction than their high-temperature counterparts. Crucially, the gap in the catalytic performance was retained even after prolonged periods of time (>24 hours) at reaction temperatures as high as 450 °C. After exposure to such harsh conditions the Pt NPs deposited at 100 °C still retained a size distribution that is narrower than the one of the as-synthesized NPs obtained at 250 °C. The ...
The deposition of Pd and Pt nanoparticles by atomic layer deposition (ALD) has been studied extensiv...
The deposition of Pd and Pt nanoparticles by atomic layer deposition (ALD) has been studied extensiv...
We present the in situ synthesis of Pt nanoparticles within MIL-101-Cr (MIL = Materials Institute La...
We tailored the size distribution of Pt nanoparticles (NPs) on graphene nanoplatelets at a given met...
Despite the innumerable developments of nanosized and well dispersed noble metal catalysts, the degr...
Despite the innumerable developments of nanosized and well dispersed noble metal catalysts, the degr...
An effective strategy for reducing the Pt content while retaining the activity of a Pt-based catalys...
Graphene is considered as a promising catalyst support for polymer electrolyte membrane (PEM) fuel c...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
*S Supporting Information ABSTRACT: A platform for producing stabilized Pt atoms and clusters throug...
Nanoparticles (NPs) of Pt, Ni or NiO, deposited on few-layered graphene using pulsed laser ablation ...
Particle coarsening is the main cause for thermal deactivation and lifetime reduction of supported P...
International audienceControlling the size, dispersion, and shape of nanoparticles (NPs) in the high...
Platinum nanoparticles were grown on alumina by atomic layer deposition using either H<sub>2</sub> o...
In this study, the pristine graphene nanosheets (GNS) derived from chemical vapor deposition process...
The deposition of Pd and Pt nanoparticles by atomic layer deposition (ALD) has been studied extensiv...
The deposition of Pd and Pt nanoparticles by atomic layer deposition (ALD) has been studied extensiv...
We present the in situ synthesis of Pt nanoparticles within MIL-101-Cr (MIL = Materials Institute La...
We tailored the size distribution of Pt nanoparticles (NPs) on graphene nanoplatelets at a given met...
Despite the innumerable developments of nanosized and well dispersed noble metal catalysts, the degr...
Despite the innumerable developments of nanosized and well dispersed noble metal catalysts, the degr...
An effective strategy for reducing the Pt content while retaining the activity of a Pt-based catalys...
Graphene is considered as a promising catalyst support for polymer electrolyte membrane (PEM) fuel c...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
*S Supporting Information ABSTRACT: A platform for producing stabilized Pt atoms and clusters throug...
Nanoparticles (NPs) of Pt, Ni or NiO, deposited on few-layered graphene using pulsed laser ablation ...
Particle coarsening is the main cause for thermal deactivation and lifetime reduction of supported P...
International audienceControlling the size, dispersion, and shape of nanoparticles (NPs) in the high...
Platinum nanoparticles were grown on alumina by atomic layer deposition using either H<sub>2</sub> o...
In this study, the pristine graphene nanosheets (GNS) derived from chemical vapor deposition process...
The deposition of Pd and Pt nanoparticles by atomic layer deposition (ALD) has been studied extensiv...
The deposition of Pd and Pt nanoparticles by atomic layer deposition (ALD) has been studied extensiv...
We present the in situ synthesis of Pt nanoparticles within MIL-101-Cr (MIL = Materials Institute La...