Perovskite-structured (ABO3) transition metal oxides are promising bifunctional electrocatalysts for efficient oxygen evolution reaction (OER) and oxygen reduction reaction (ORR). In this paper, a set of epitaxial rare-earth nickelates (RNiO3) thin films is investigated with controlled A-site isovalent substitution to correlate their structure and physical properties with ORR/OER activities, examined by using a three-electrode system in O2-saturated 0.1 m KOH electrolyte. The ORR activity decreases monotonically with decreasing the A-site element ionic radius which lowers the conductivity of RNiO3 (R = La, La0.5Nd0.5, La0.2Nd0.8, Nd, Nd0.5Sm0.5, Sm, and Gd) films, with LaNiO3 being the most conductive and active. On the other hand, the OER ...
Atomic-scale direct probing of active sites and subsequent elucidation of the structure–activity rel...
Deliberate control of oxygen vacancy formation and migration in perovskite oxide thin films is impor...
Transition metal oxides are being actively pursued as low-cost electrocatalysts for the oxygen evolu...
Perovskite-structured (ABO3) transition metal oxides are promising bifunctional electrocatalysts for...
We present a series of perovskite electrocatalysts that are highly active for both the oxygen evolut...
Transition metal oxides have been the focus of solid state physics research for decades. The Coulomb...
The perovskite oxide LaNiO3 is a promising oxygen electrocatalyst for renewable energy storage and c...
Pursuing efficient and low-cost catalysts for the sluggish oxygen evolution reaction (OER) is impera...
We present a series of perovskite electrocatalysts that are highly active for both the oxygen evolut...
Pursuing efficient and low-cost catalysts for the sluggish oxygen evolution reaction (OER) is impera...
Pursuing efficient and low-cost catalysts for the sluggish oxygen evolution reaction (OER) is impera...
Aliovalent doping is widely adopted to tune the electronic structure of transition-metal oxides for ...
Aliovalent doping has been widely adopted to tune the electronic structure of transition-metal oxide...
Double perovskite oxides are one of the most promising bifunctional electrocatalysts for efficient o...
The identification of electrocatalysts mediating both the oxygen reduction reaction (ORR) and oxygen...
Atomic-scale direct probing of active sites and subsequent elucidation of the structure–activity rel...
Deliberate control of oxygen vacancy formation and migration in perovskite oxide thin films is impor...
Transition metal oxides are being actively pursued as low-cost electrocatalysts for the oxygen evolu...
Perovskite-structured (ABO3) transition metal oxides are promising bifunctional electrocatalysts for...
We present a series of perovskite electrocatalysts that are highly active for both the oxygen evolut...
Transition metal oxides have been the focus of solid state physics research for decades. The Coulomb...
The perovskite oxide LaNiO3 is a promising oxygen electrocatalyst for renewable energy storage and c...
Pursuing efficient and low-cost catalysts for the sluggish oxygen evolution reaction (OER) is impera...
We present a series of perovskite electrocatalysts that are highly active for both the oxygen evolut...
Pursuing efficient and low-cost catalysts for the sluggish oxygen evolution reaction (OER) is impera...
Pursuing efficient and low-cost catalysts for the sluggish oxygen evolution reaction (OER) is impera...
Aliovalent doping is widely adopted to tune the electronic structure of transition-metal oxides for ...
Aliovalent doping has been widely adopted to tune the electronic structure of transition-metal oxide...
Double perovskite oxides are one of the most promising bifunctional electrocatalysts for efficient o...
The identification of electrocatalysts mediating both the oxygen reduction reaction (ORR) and oxygen...
Atomic-scale direct probing of active sites and subsequent elucidation of the structure–activity rel...
Deliberate control of oxygen vacancy formation and migration in perovskite oxide thin films is impor...
Transition metal oxides are being actively pursued as low-cost electrocatalysts for the oxygen evolu...