The precise synthesis and stabilization of oxide-supported bimetallic clusters in the low-to-sub nanometer size regime is highly relevant in various fields, from optics and sensing to electrochemistry and catalysis. In surface-driven phenomena such as catalysis, avoiding metal segregation and agglomeration is essential for performance and stability under relevant operation conditions. Here we show how high-temperature oxidative crystal redispersion and oxide atom-trapping phenomena provide a widely valid route towards atomically dispersed bimetallic precursors which, upon reductive metal agglomeration, result in very small, uniformly sized and remarkably stable bimetallic clusters. For a PdPt/MgO system, oxidative redispersion leads to isol...
Surface-supported isolated atoms in single-atom catalysts (SACs) are usually stabilized by diverse d...
In recent heterogeneous catalysis, much effort has been made in understanding how the size, shape, a...
MICROSCOPIE+CATREN:ING+TLN:PAF:FMO:JRO:MAO:LPIInternational audienceStimulated by recent advances in...
The precise synthesis and stabilization of oxide-supported bimetallic clusters in the low-to-sub nan...
Bimetallic nanoparticles can lead to catalysts with improved turnover rates and selectivities, but m...
Noble metal-based catalysts have numerous industrial uses, and maximum utilization of the precious m...
Bimetallic catalytic materials are in widespread use for numerous reactions, as the properties of a ...
Designing new synthesis routes to fabricate highly thermally durable precious metal single-atom cata...
In order to design an ideal catalyst, the catalytic properties should be fully understood at atomic ...
Experimental and theoretical investigations of the oxidation reaction of CO to form carbon dioxide, ...
Metallic nanoparticles finely dispersed over oxide supports have found use as heterogeneous catalyst...
ABSTRACT: Combining temperature-programmed reaction measurements, isotopic labeling experiments, and...
We aim to develop novel catalysts that exhibit high activity, selectivity and stability under real c...
Society relies on catalytic processes for many important chemical transformations, which has contrib...
Bimetallic nanocatalyst often shows enhanced performance where the key lies not only on the overall ...
Surface-supported isolated atoms in single-atom catalysts (SACs) are usually stabilized by diverse d...
In recent heterogeneous catalysis, much effort has been made in understanding how the size, shape, a...
MICROSCOPIE+CATREN:ING+TLN:PAF:FMO:JRO:MAO:LPIInternational audienceStimulated by recent advances in...
The precise synthesis and stabilization of oxide-supported bimetallic clusters in the low-to-sub nan...
Bimetallic nanoparticles can lead to catalysts with improved turnover rates and selectivities, but m...
Noble metal-based catalysts have numerous industrial uses, and maximum utilization of the precious m...
Bimetallic catalytic materials are in widespread use for numerous reactions, as the properties of a ...
Designing new synthesis routes to fabricate highly thermally durable precious metal single-atom cata...
In order to design an ideal catalyst, the catalytic properties should be fully understood at atomic ...
Experimental and theoretical investigations of the oxidation reaction of CO to form carbon dioxide, ...
Metallic nanoparticles finely dispersed over oxide supports have found use as heterogeneous catalyst...
ABSTRACT: Combining temperature-programmed reaction measurements, isotopic labeling experiments, and...
We aim to develop novel catalysts that exhibit high activity, selectivity and stability under real c...
Society relies on catalytic processes for many important chemical transformations, which has contrib...
Bimetallic nanocatalyst often shows enhanced performance where the key lies not only on the overall ...
Surface-supported isolated atoms in single-atom catalysts (SACs) are usually stabilized by diverse d...
In recent heterogeneous catalysis, much effort has been made in understanding how the size, shape, a...
MICROSCOPIE+CATREN:ING+TLN:PAF:FMO:JRO:MAO:LPIInternational audienceStimulated by recent advances in...