Highly active metal nanoparticles are desired to serve in high-temperature electrocatalysis, for example, in solid oxide electrochemical cells. Unfortunately, the low thermal stability of nanosized particles and the sophisticated interface requirement for electrode structures to support concurrent ionic and electronic transport make it hard to identify the exact catalytic role of nanoparticles embedded within complex electrode architectures. Here we present an accurate analysis of the reactivity of oxide electrodes boosted by metal nanoparticles, where all particles participate in the reaction. Monodisperse particles (Pt, Pd, Au and Co), 10 nm in size and stable at high temperature (more than 600 °C), are uniformly distributed onto mixed-co...
A novel high throughput technique has been developed for the investigation of the influence of suppo...
Solid oxide cells (SOCs) can operate with high efficiency in two ways - as fuel cells, oxidizing a f...
Solid oxide cells (SOCs) can operate with high efficiency in two ways - as fuel cells, oxidizing a f...
Electrocatalysis is at the heart of our future transition to a renewable energy system. Most energy ...
Electrocatalysis is at the heart of our future transition to a renewable energy system. Most energy ...
Electrocatalysis is at the heart of our future transition to a renewable energy system. Most energy ...
Solid oxide cells (SOCs) can operate with high efficiency in two ways—as fuel cells, oxidizing a fue...
Solid oxide cells (SOCs) can operate with high efficiency in two ways—as fuel cells, oxidizing a fue...
The lack of structurally diverse electrocatalysts having high activity and controlled selectivity ha...
The lack of structurally diverse electrocatalysts having high activity and controlled selectivity ha...
In this work, we utilized the concept of decoupling the electrocatalytic activity from the current c...
Improving the performance of hydrogen evolution and oxidation reactions using precious metal catalys...
Nanoparticle-functionalized electrodes have attracted attention in areas such as energy production a...
The concept of single atom catalysis offers maximum noble metal efficiency for the development of lo...
The concept of single atom catalysis offers maximum noble metal efficiency for the development of lo...
A novel high throughput technique has been developed for the investigation of the influence of suppo...
Solid oxide cells (SOCs) can operate with high efficiency in two ways - as fuel cells, oxidizing a f...
Solid oxide cells (SOCs) can operate with high efficiency in two ways - as fuel cells, oxidizing a f...
Electrocatalysis is at the heart of our future transition to a renewable energy system. Most energy ...
Electrocatalysis is at the heart of our future transition to a renewable energy system. Most energy ...
Electrocatalysis is at the heart of our future transition to a renewable energy system. Most energy ...
Solid oxide cells (SOCs) can operate with high efficiency in two ways—as fuel cells, oxidizing a fue...
Solid oxide cells (SOCs) can operate with high efficiency in two ways—as fuel cells, oxidizing a fue...
The lack of structurally diverse electrocatalysts having high activity and controlled selectivity ha...
The lack of structurally diverse electrocatalysts having high activity and controlled selectivity ha...
In this work, we utilized the concept of decoupling the electrocatalytic activity from the current c...
Improving the performance of hydrogen evolution and oxidation reactions using precious metal catalys...
Nanoparticle-functionalized electrodes have attracted attention in areas such as energy production a...
The concept of single atom catalysis offers maximum noble metal efficiency for the development of lo...
The concept of single atom catalysis offers maximum noble metal efficiency for the development of lo...
A novel high throughput technique has been developed for the investigation of the influence of suppo...
Solid oxide cells (SOCs) can operate with high efficiency in two ways - as fuel cells, oxidizing a f...
Solid oxide cells (SOCs) can operate with high efficiency in two ways - as fuel cells, oxidizing a f...