Direct carbon solid oxide fuel cells (DC-SOFCs), which can efficiently convert chemical energy of carbonaceous fuels into electricity, have recently gained much research attention as they offer an effective way to address future economic and environmental challenges. Herein, B-site Ti-substituted (PrBa)0.95Fe2–xTixO6−δ (PBFTx, x = 0–0.3) materials are synthesized via a sol–gel combustion method and evaluated as anode materials for DC-SOFCs. Ti doping enhances the phase structure stability of the material under a reducing atmosphere. X-ray diffraction, scanning electron microscopy, and transmission electron microscopy analyses demonstrate the exsolution of metallic Fe nanoparticles on the surface of the PBFTx perovskite lattice after the mat...
uIn situ exsolution of nanoparticles is widely considered as an efficient and cost-effective method ...
Solid oxide fuel cells (SOFCs) have potential to be the cleanest and most efficient electrochemical ...
Solid oxide fuel cells (SOFCs) have potential to be the cleanest and most efficient electrochemical ...
A highly active anode material for solid oxide fuel cells resistant to carbon deposition is develope...
This work is supported by the NSFC (grant No. 51702264; 41371275) and National Key Research and Deve...
Metal nanoparticles exsolved from perovskite oxides have created great interest as anode materials i...
Development of alternative ceramic oxide anode materials is a key step for direct hydrocarbon solid ...
Solid oxide fuel cells (SOFCs) have attracted attention as a promising electrochemical energy conver...
Electrically conducting oxides have been proposed as alternatives to Ni-based cermet anodes for soli...
Changing the type and content of cation doping in perovskite oxide can improve its electrocatalytic ...
Exsolution of A-site and/or B-site dopants has been widely used to improve the electroactivity and c...
This work involved the development of new perovskite oxides based on SmFeO3 and testing their perfor...
Solid oxide fuel cells (SOFCs) are electrochemical devices capable of converting and storing energy ...
Solid oxide fuel cells (SOFCs) are at the frontline of clean energy generation technologies to conve...
La0.4Sr0.5Ba0.1TiO3 (LSBT) is a promising anode candidate with perovskite structure, due to its exce...
uIn situ exsolution of nanoparticles is widely considered as an efficient and cost-effective method ...
Solid oxide fuel cells (SOFCs) have potential to be the cleanest and most efficient electrochemical ...
Solid oxide fuel cells (SOFCs) have potential to be the cleanest and most efficient electrochemical ...
A highly active anode material for solid oxide fuel cells resistant to carbon deposition is develope...
This work is supported by the NSFC (grant No. 51702264; 41371275) and National Key Research and Deve...
Metal nanoparticles exsolved from perovskite oxides have created great interest as anode materials i...
Development of alternative ceramic oxide anode materials is a key step for direct hydrocarbon solid ...
Solid oxide fuel cells (SOFCs) have attracted attention as a promising electrochemical energy conver...
Electrically conducting oxides have been proposed as alternatives to Ni-based cermet anodes for soli...
Changing the type and content of cation doping in perovskite oxide can improve its electrocatalytic ...
Exsolution of A-site and/or B-site dopants has been widely used to improve the electroactivity and c...
This work involved the development of new perovskite oxides based on SmFeO3 and testing their perfor...
Solid oxide fuel cells (SOFCs) are electrochemical devices capable of converting and storing energy ...
Solid oxide fuel cells (SOFCs) are at the frontline of clean energy generation technologies to conve...
La0.4Sr0.5Ba0.1TiO3 (LSBT) is a promising anode candidate with perovskite structure, due to its exce...
uIn situ exsolution of nanoparticles is widely considered as an efficient and cost-effective method ...
Solid oxide fuel cells (SOFCs) have potential to be the cleanest and most efficient electrochemical ...
Solid oxide fuel cells (SOFCs) have potential to be the cleanest and most efficient electrochemical ...