The oxygen reduction reaction (ORR) is one of the most important electrochemical reactions in energy conversion and storage technologies, such as fuel cells and metal–air batteries. However, the sluggish kinetics of the ORR is a key factor limiting the performance of these energy storage and conversion devices. Perovskite oxides are a promising family of electrocatalysts for the ORR because of their unique physical and chemical properties, such as variable crystal structure and non-stoichiometric chemistry. Studies have shown that the catalytic properties of perovskite oxides in the ORR are largely related to oxygen vacancies, which alter their electronic and crystal structures and surface chemistry. This review summarizes recent research a...
Perovskite oxides (ABO<sub>3</sub>) have recently attracted attention since tailoring their chemical...
Oxygen reduction is considered a key reaction for electrochemical energy conversion but slow kinetic...
Segregation and phase separation of aliovalent dopants on perovskite oxide (ABO3) surfaces are detri...
The development of commercially friendly and stable catalysts for oxygen reduction reaction (ORR) is...
The development of commercially friendly and stable catalysts for oxygen reduction reaction (ORR) is...
Oxygen electrocatalysis, namely of the oxygen reduction reaction (ORR) and the oxygen evolution reac...
One hindrance to the development of fuel cells and electrolyzers are the oxygen electrodes, which su...
International audienceTriggering the redox reaction of oxygens has become essential for the developm...
Triggering the redox reaction of oxygens has become essential for the development of (electro) catal...
International audienceTriggering the redox reaction of oxygens has become essential for the developm...
International audienceTriggering the redox reaction of oxygens has become essential for the developm...
For efficient electrochemical catalysts, several molecular-scale descriptors have been proposed for ...
Segregation and phase separation of aliovalent dopants on perovskite oxide (ABO3) surfaces are detri...
Perovskite oxide ceramics attracts significant attention as a strong candidate of bifunctional oxyge...
The slow kinetics of the oxygen evolution reaction (OER) is the main cause of energy loss in many lo...
Perovskite oxides (ABO<sub>3</sub>) have recently attracted attention since tailoring their chemical...
Oxygen reduction is considered a key reaction for electrochemical energy conversion but slow kinetic...
Segregation and phase separation of aliovalent dopants on perovskite oxide (ABO3) surfaces are detri...
The development of commercially friendly and stable catalysts for oxygen reduction reaction (ORR) is...
The development of commercially friendly and stable catalysts for oxygen reduction reaction (ORR) is...
Oxygen electrocatalysis, namely of the oxygen reduction reaction (ORR) and the oxygen evolution reac...
One hindrance to the development of fuel cells and electrolyzers are the oxygen electrodes, which su...
International audienceTriggering the redox reaction of oxygens has become essential for the developm...
Triggering the redox reaction of oxygens has become essential for the development of (electro) catal...
International audienceTriggering the redox reaction of oxygens has become essential for the developm...
International audienceTriggering the redox reaction of oxygens has become essential for the developm...
For efficient electrochemical catalysts, several molecular-scale descriptors have been proposed for ...
Segregation and phase separation of aliovalent dopants on perovskite oxide (ABO3) surfaces are detri...
Perovskite oxide ceramics attracts significant attention as a strong candidate of bifunctional oxyge...
The slow kinetics of the oxygen evolution reaction (OER) is the main cause of energy loss in many lo...
Perovskite oxides (ABO<sub>3</sub>) have recently attracted attention since tailoring their chemical...
Oxygen reduction is considered a key reaction for electrochemical energy conversion but slow kinetic...
Segregation and phase separation of aliovalent dopants on perovskite oxide (ABO3) surfaces are detri...