Air electrode development is one of the most challenging steps in the design of lightweight and efficient metal-air batteries and fuel cells. The best performing oxygen catalysts often contain precious metals at a high manufacturing cost. In this paper, two low-cost catalysts for the oxygen reduction (ORR) and evolution reactions (OER), based on LSFCO perovskite and Ni-Fe hexacyanoferrate, were compared with a precious metal palladium catalyst on carbon (Pd/C). LSFCO/C showed the best all-round performance as a single bifunctional catalyst but Pd/C had the strongest ORR activity. Ni-Fe hexacyanoferrate is straightforward to manufacture in industrial quantities, and is more active for the OER than palladium and LSFCO perovskite at small load...
As the world’s power demand swells even bigger every year, the already worrying CO2 emissions expand...
Oxygen electrocatalysis, including the oxygen evolution reaction (OER) and oxygen reduction reaction...
La0.6Sr0.4Co0.2Fe0.8O3-delta (LSCF) perovskites have previously emerged as efficient cathode catalys...
The development of air-breathing cathodes, which utilise atmospheric oxygen, enables the constructio...
Metal-air batteries (MAB) is becoming a revived interest because of its high theoretical energy dens...
High-capacity rechargeable batteries play an important role at integrating and optimizing the consum...
Oxygen electrochemistry plays a major role in energy conversion and storage devices, particularly in...
The effect of B sites on the catalytic activities of oxygen evolution reaction (OER) for perovskite ...
One hindrance to the development of fuel cells and electrolyzers are the oxygen electrodes, which su...
Metal-air batteries have attracted plenty of attentions because of their high theoretical energy den...
Perovskite oxides have emerged as promising electrocatalysts for the sluggish oxygen evolution react...
Due to increased energy demand and environmental concerns, sustainable energy systems such as electr...
Fuel cells present an intriguing method of transforming stored chemical energy into electricity. In ...
The efficiencies of a number of electrochemical devices (e.g., fuel cells and metal-air batteries) a...
For the development of a rechargeable metal-air battery, which is expected to become one of the most...
As the world’s power demand swells even bigger every year, the already worrying CO2 emissions expand...
Oxygen electrocatalysis, including the oxygen evolution reaction (OER) and oxygen reduction reaction...
La0.6Sr0.4Co0.2Fe0.8O3-delta (LSCF) perovskites have previously emerged as efficient cathode catalys...
The development of air-breathing cathodes, which utilise atmospheric oxygen, enables the constructio...
Metal-air batteries (MAB) is becoming a revived interest because of its high theoretical energy dens...
High-capacity rechargeable batteries play an important role at integrating and optimizing the consum...
Oxygen electrochemistry plays a major role in energy conversion and storage devices, particularly in...
The effect of B sites on the catalytic activities of oxygen evolution reaction (OER) for perovskite ...
One hindrance to the development of fuel cells and electrolyzers are the oxygen electrodes, which su...
Metal-air batteries have attracted plenty of attentions because of their high theoretical energy den...
Perovskite oxides have emerged as promising electrocatalysts for the sluggish oxygen evolution react...
Due to increased energy demand and environmental concerns, sustainable energy systems such as electr...
Fuel cells present an intriguing method of transforming stored chemical energy into electricity. In ...
The efficiencies of a number of electrochemical devices (e.g., fuel cells and metal-air batteries) a...
For the development of a rechargeable metal-air battery, which is expected to become one of the most...
As the world’s power demand swells even bigger every year, the already worrying CO2 emissions expand...
Oxygen electrocatalysis, including the oxygen evolution reaction (OER) and oxygen reduction reaction...
La0.6Sr0.4Co0.2Fe0.8O3-delta (LSCF) perovskites have previously emerged as efficient cathode catalys...