Reversible protonic ceramic cells (RePCCs) can facilitate the global transition to renewable energy sources by providing high efficiency, scalable, and fuel-flexible energy generation and storage at the grid level. However, RePCC technology is limited by the lack of durable air electrode materials with high activity toward the oxygen reduction/evolution reaction and water formation/water-splitting reaction. Herein, a novel nanocomposites concept for developing bifunctional RePCC electrodes with exceptional performance is reported. By harnessing the unique functionalities of nanoscale particles, nanocomposites can produce electrodes that simultaneously optimize reaction activity in both fuel cell/electrolysis operations. In this work, a nano...
The carbon dioxide and steam co-electrolysis in solid oxide cells offers an efficient way to store t...
Syngas (CO+H2) is a key-intermediate for the production of liquid fuels via the Fischer-Tropsch proc...
To accelerate the large-scale commercialization of electrochemical energy storage and conversion tec...
Protonic ceramic fuel cells (PCFCs) have attracted more attention than solid oxide fuel cells based ...
The last decades have been characterized by a constant increase in the need of energy coupled with a...
The effects of the electrochemical oxygen reduction reaction (ORR) on the surface of single-phase pe...
Highly efficient air electrodes are a key component of reversible fuel cells for energy storage and ...
Advanced morphology of intertwined core–corona structured bifunctional catalyst (IT-CCBC) is introdu...
Highly efficient bifunctional oxygen electrocatalysts are indispensable for the development of highl...
The high cost and poor durability of noble metal electrocatalysts for bifunctional oxygen catalysis ...
Protonic ceramic fuel cells (PCFCs) have great potential in applications compared with oxygen-ion-co...
The development of renewable energy conversion and storage technologies has become a leading focus o...
The successful development of low-cost, durable electrocatalysts for oxygen reduction reaction (ORR)...
Solid oxide fuel cells (SOFCs) have attracted attention as a promising electrochemical energy conver...
Metal nanoparticles support materials play a crucial role in many fields, including energy conversio...
The carbon dioxide and steam co-electrolysis in solid oxide cells offers an efficient way to store t...
Syngas (CO+H2) is a key-intermediate for the production of liquid fuels via the Fischer-Tropsch proc...
To accelerate the large-scale commercialization of electrochemical energy storage and conversion tec...
Protonic ceramic fuel cells (PCFCs) have attracted more attention than solid oxide fuel cells based ...
The last decades have been characterized by a constant increase in the need of energy coupled with a...
The effects of the electrochemical oxygen reduction reaction (ORR) on the surface of single-phase pe...
Highly efficient air electrodes are a key component of reversible fuel cells for energy storage and ...
Advanced morphology of intertwined core–corona structured bifunctional catalyst (IT-CCBC) is introdu...
Highly efficient bifunctional oxygen electrocatalysts are indispensable for the development of highl...
The high cost and poor durability of noble metal electrocatalysts for bifunctional oxygen catalysis ...
Protonic ceramic fuel cells (PCFCs) have great potential in applications compared with oxygen-ion-co...
The development of renewable energy conversion and storage technologies has become a leading focus o...
The successful development of low-cost, durable electrocatalysts for oxygen reduction reaction (ORR)...
Solid oxide fuel cells (SOFCs) have attracted attention as a promising electrochemical energy conver...
Metal nanoparticles support materials play a crucial role in many fields, including energy conversio...
The carbon dioxide and steam co-electrolysis in solid oxide cells offers an efficient way to store t...
Syngas (CO+H2) is a key-intermediate for the production of liquid fuels via the Fischer-Tropsch proc...
To accelerate the large-scale commercialization of electrochemical energy storage and conversion tec...