The search for new functional materials that combine high stability and efficiency with reasonable cost and ease of synthesis is critical for their use in renewable energy applications. Specifically in catalysis, nanoparticles, with their high surface-to-volume ratio, can overcome the cost implications associated with otherwise having to use large amounts of noble metals. However, commercialized materials, that is, catalytic nanoparticles deposited on oxide supports, often suffer from loss of activity because of coarsening and carbon deposition during operation. Exsolution has proven to be an interesting strategy to overcome such issues. Here, the controlled emergence, or exsolution, of faceted iridium nanoparticles from a doped SrTiO3 pero...
Perovskite oxides have been extensively studied due to their wide range of applications in electroni...
The presence of active metal nanoparticles on the surface significantly increases the electrochemica...
\u3cp\u3eUnderstanding and controlling the formation of nanoparticles at the surface of functional o...
The search for new functional materials that combine high stability and efficiency with reasonable c...
Simultaneous realization of improved activity, enhanced stability, and reduced cost remains a desira...
In exsolution, nanoparticles form by emerging from oxide hosts by application of redox driving force...
Exsolution of Catalytically Active Ir Nanoparticles from Strontium Titanate_Raw DataExsolution of Ca...
Many catalysts and in particular automotive exhaust catalysts usually consist of noble metal nanopar...
Summarization: Iridium nanoparticles deposited on a variety of surfaces exhibited thermal sintering ...
Exploring robust catalysts for water oxidation in acidic electrolyte is challenging due to the limit...
High‐performance nanoparticle platforms can drive catalysis progress to new horizons, delivering env...
To enable future large-scale generation of hydrogen via proton exchange membrane (PEM) electrolysis,...
MICROSCOPIE+CARE+EVE:ABO:MAO:PVEInternational audienceA novel method of catalysts synthesis has been...
For efficient catalysis and electrocatalysis well‐designed, high‐surface‐area support architectures ...
In heterogeneous catalysis, surfaces decorated with uniformly dispersed, catalytically-active (nano)...
Perovskite oxides have been extensively studied due to their wide range of applications in electroni...
The presence of active metal nanoparticles on the surface significantly increases the electrochemica...
\u3cp\u3eUnderstanding and controlling the formation of nanoparticles at the surface of functional o...
The search for new functional materials that combine high stability and efficiency with reasonable c...
Simultaneous realization of improved activity, enhanced stability, and reduced cost remains a desira...
In exsolution, nanoparticles form by emerging from oxide hosts by application of redox driving force...
Exsolution of Catalytically Active Ir Nanoparticles from Strontium Titanate_Raw DataExsolution of Ca...
Many catalysts and in particular automotive exhaust catalysts usually consist of noble metal nanopar...
Summarization: Iridium nanoparticles deposited on a variety of surfaces exhibited thermal sintering ...
Exploring robust catalysts for water oxidation in acidic electrolyte is challenging due to the limit...
High‐performance nanoparticle platforms can drive catalysis progress to new horizons, delivering env...
To enable future large-scale generation of hydrogen via proton exchange membrane (PEM) electrolysis,...
MICROSCOPIE+CARE+EVE:ABO:MAO:PVEInternational audienceA novel method of catalysts synthesis has been...
For efficient catalysis and electrocatalysis well‐designed, high‐surface‐area support architectures ...
In heterogeneous catalysis, surfaces decorated with uniformly dispersed, catalytically-active (nano)...
Perovskite oxides have been extensively studied due to their wide range of applications in electroni...
The presence of active metal nanoparticles on the surface significantly increases the electrochemica...
\u3cp\u3eUnderstanding and controlling the formation of nanoparticles at the surface of functional o...