A cheap and direct solution towards engineering better catalysts through identification of novel materials is required for a sustainable energy system. Perovskite oxides have emerged as potential candidates to replace the less economically attractive Pt and IrO2 water splitting catalysts. In this work, excellent electrical conductivity (980 S cm−1) was found for the double perovskite of composition GdBa0.6Sr0.4Co2O6−δ which is consistent with a better oxygen evolution reaction activity with the onset polarisation of 1.51 V with respect to a reversible hydrogen electrode (RHE). GdBa1−xSrxCo2O6−δ with increasing Sr content was found to crystallise in the higher symmetry tetragonal P4/mmm space group in comparison with the undoped GdBaCo2O6−δ ...
Double perovskites have emerged as efficient candidates for catalyzing the electrochemical oxygen ev...
Development of highly active and cost-effective electrocatalysts is central to the large-scale elect...
Perovskites are functional materials with the general formula ABO3 (A = alkali, alkaline earth or la...
A cheap and direct solution towards engineering better catalysts through identification of novel mat...
The effect of Sr2+ substitution for Ba2+ on the crystal chemistry, oxygen content, thermal expansion...
The perovskite oxide SrCoO3−x is a promising oxygen electrocatalyst for renewable energy storage and...
The electronic structure of transition metal oxides governs the catalysis of many central reactions ...
Sr-doped double perovskite oxides PrBa1−xSrxCo2O5+δ (x = 0.0–1.0) are prepared and characterized by ...
The efficiencies of a number of electrochemical devices (e.g., fuel cells and metal-air batteries) a...
Sr-doped double perovskite oxides PrBa1−xSrxCo2O5+δ (x = 0.0–1.0) are prepared and characterized by ...
Mixed conducting perovskite oxides are promising catalysts for high-temperature oxygen reduction rea...
Here we present a comprehensive study of oxygen-deficient double perovskites PrBa1−xCo2O5+δ (x = 0.0...
Here we present a comprehensive study of oxygen-deficient double perovskites PrBa1-xCo2O5+delta (x =...
Developing cost-effective and efficient electrocatalysts for oxygen evolution reaction (OER) is of p...
Developing cost-effective and efficient electrocatalysts for oxygen evolution reaction (OER) is of p...
Double perovskites have emerged as efficient candidates for catalyzing the electrochemical oxygen ev...
Development of highly active and cost-effective electrocatalysts is central to the large-scale elect...
Perovskites are functional materials with the general formula ABO3 (A = alkali, alkaline earth or la...
A cheap and direct solution towards engineering better catalysts through identification of novel mat...
The effect of Sr2+ substitution for Ba2+ on the crystal chemistry, oxygen content, thermal expansion...
The perovskite oxide SrCoO3−x is a promising oxygen electrocatalyst for renewable energy storage and...
The electronic structure of transition metal oxides governs the catalysis of many central reactions ...
Sr-doped double perovskite oxides PrBa1−xSrxCo2O5+δ (x = 0.0–1.0) are prepared and characterized by ...
The efficiencies of a number of electrochemical devices (e.g., fuel cells and metal-air batteries) a...
Sr-doped double perovskite oxides PrBa1−xSrxCo2O5+δ (x = 0.0–1.0) are prepared and characterized by ...
Mixed conducting perovskite oxides are promising catalysts for high-temperature oxygen reduction rea...
Here we present a comprehensive study of oxygen-deficient double perovskites PrBa1−xCo2O5+δ (x = 0.0...
Here we present a comprehensive study of oxygen-deficient double perovskites PrBa1-xCo2O5+delta (x =...
Developing cost-effective and efficient electrocatalysts for oxygen evolution reaction (OER) is of p...
Developing cost-effective and efficient electrocatalysts for oxygen evolution reaction (OER) is of p...
Double perovskites have emerged as efficient candidates for catalyzing the electrochemical oxygen ev...
Development of highly active and cost-effective electrocatalysts is central to the large-scale elect...
Perovskites are functional materials with the general formula ABO3 (A = alkali, alkaline earth or la...