Protonic ceramic fuel cells (PCFCs), as an efficient energy storage and conversion device, have great potential to solve the serious problems of energy shortage and environmental pollution. Improving the proton conductivity of the promising cathode materials is an effective solution to promote the widespread application of PCFCs at low temperatures (450–650 °C). Herein, considering the high oxygen reduction reaction (ORR) activity of BaCoO3-based perovskite oxide and beneficial proton uptake capacity of Zn-doping, we construct BaCo0.4Fe0.4Zn0.1Y0.1O3‑δ (BCFZnY) as the PCFCs cathode, and compare it with the classic triple-conducting cathode BaCo0.4Fe0.4Zr0.1Y0.1O3‑δ (BCFZrY). Different from the general strategy of increasing the initial oxyg...
Cathode materials for proton-conducting ceramic fuel cells (PCFC) should combine electronic conducti...
Protonic ceramic membrane fuel cells (PCMFCs) based on oxide proton conductors exhibit more advantag...
To overcome the limitations of the solid oxide fuel cells (SOFCs) due to the high temperature operat...
Proton-conducting fuel cells (PCFCs) with a perovskite-type proton-conducting electrolyte show many ...
A cathode in a proton-conducting ceramic fuel cell (PCFC) should meet several criteria including hig...
Proton-conducting solid–oxide fuel cell (H-SOFC) is an alternative promising low-temperature electro...
Protonic ceramic membrane fuel cells (PCMFCs) based on proton-conducting electrolytes have attracted...
Protonic ceramic fuel cells (PCFCs) have become the most efficient, clean and cost-effective electro...
Protonic ceramic fuel cells (PCFCs) have attracted more attention than solid oxide fuel cells based ...
Fuel cells based on ceramic proton conductors receive growing interest because these electrolytes of...
Protonic ceramic fuel cells have become extremely interesting due to their high power output at the ...
Astable, easily sintered perovskite oxide BaCe0.5Zr 0.3Ya0.16Zn0.04O3-δ (BCZYZn) as an electrolyte f...
This study characterizes BaCo0.7Fe0.2Nb0.1O3−δ (BCFN) perovskite oxide and evaluates it ...
Proton-conducting ceramics based on perovskite-type oxides have been significantly applied in a wide...
A stable, easily sintered perovskite oxide BaCe0.5Zr0.3Y0.16Zn0.04O3-delta (BCZYZn) as an electrolyt...
Cathode materials for proton-conducting ceramic fuel cells (PCFC) should combine electronic conducti...
Protonic ceramic membrane fuel cells (PCMFCs) based on oxide proton conductors exhibit more advantag...
To overcome the limitations of the solid oxide fuel cells (SOFCs) due to the high temperature operat...
Proton-conducting fuel cells (PCFCs) with a perovskite-type proton-conducting electrolyte show many ...
A cathode in a proton-conducting ceramic fuel cell (PCFC) should meet several criteria including hig...
Proton-conducting solid–oxide fuel cell (H-SOFC) is an alternative promising low-temperature electro...
Protonic ceramic membrane fuel cells (PCMFCs) based on proton-conducting electrolytes have attracted...
Protonic ceramic fuel cells (PCFCs) have become the most efficient, clean and cost-effective electro...
Protonic ceramic fuel cells (PCFCs) have attracted more attention than solid oxide fuel cells based ...
Fuel cells based on ceramic proton conductors receive growing interest because these electrolytes of...
Protonic ceramic fuel cells have become extremely interesting due to their high power output at the ...
Astable, easily sintered perovskite oxide BaCe0.5Zr 0.3Ya0.16Zn0.04O3-δ (BCZYZn) as an electrolyte f...
This study characterizes BaCo0.7Fe0.2Nb0.1O3−δ (BCFN) perovskite oxide and evaluates it ...
Proton-conducting ceramics based on perovskite-type oxides have been significantly applied in a wide...
A stable, easily sintered perovskite oxide BaCe0.5Zr0.3Y0.16Zn0.04O3-delta (BCZYZn) as an electrolyt...
Cathode materials for proton-conducting ceramic fuel cells (PCFC) should combine electronic conducti...
Protonic ceramic membrane fuel cells (PCMFCs) based on oxide proton conductors exhibit more advantag...
To overcome the limitations of the solid oxide fuel cells (SOFCs) due to the high temperature operat...