Electrode materials for intermediate temperature (500 – 700 °C) solid oxide fuel cells require electrical and mechanical stability to maintain performance during the cell lifetime. This has proven difficult to achieve for many candidate cathode materials and their derivatives with good transport and electrocatalytic properties because of reactivity towards cell components, and the fuels and oxidants. Here we present Ba0.5Sr0.5(Co0.7Fe0.3)0.6875W0.3125O3-δ (BSCFW), a self-assembled composite prepared through simple solid state synthesis, consisting of B-site cation ordered double perovskite and disordered single perovskite oxide phases. These phases interact by dynamic compositional change at the operating temperature, promoting both chemica...
Bi doping of SrFeO3-d results in the formation of a structure with high symmetry and extraordinary e...
The SrCo0.9Sb0.1O3-δ (SCS) composite oxide with cubic perovskite structure was synthesized by a modi...
The B-site substitution with the minor amount of tin in BaFeO3−δ parent oxide is expected to stabili...
Electrode materials for intermediate temperature (500–700 ∘C) solid oxide fuel cells require electri...
The cathode is a key part in solid oxide fuel cells (SOFCs) that largely determines the cell power o...
This paper exploits the suitability of three perovskite materials Ba0.5Sr0.5Co0.8Fe0.2O3- d (BSCF), ...
Performance durability is one of the essential requirements for solid oxide fuel cell materials oper...
A novel composite electrode, obtained by combining two high performing perovskite materials, such as...
High-performance and stability for protonic ceramic fuel cell cathode applications are realised in a...
AbstractPerformance durability is one of the essential requirements for solid oxide fuel cell materi...
Ba0.5Sr0.5Co0.8Fe0.2O 3-?? (BSCF) has won tremendous attention as a cathode material for intermediat...
This study focuses on reducing the cathode polarization resistance through the use of mixed ionic el...
Bi doping of SrFeO3−δ results in the formation of a structure with high symmetry and extraordinary e...
Bi doping of SrFeO3d results in the formation of a structure with high symmetry and extraordinary el...
In this study, perovskite Ba0.5Sr0.5Co0.8Fe0.2O3-δ cathode powders were prepared by solid-state reac...
Bi doping of SrFeO3-d results in the formation of a structure with high symmetry and extraordinary e...
The SrCo0.9Sb0.1O3-δ (SCS) composite oxide with cubic perovskite structure was synthesized by a modi...
The B-site substitution with the minor amount of tin in BaFeO3−δ parent oxide is expected to stabili...
Electrode materials for intermediate temperature (500–700 ∘C) solid oxide fuel cells require electri...
The cathode is a key part in solid oxide fuel cells (SOFCs) that largely determines the cell power o...
This paper exploits the suitability of three perovskite materials Ba0.5Sr0.5Co0.8Fe0.2O3- d (BSCF), ...
Performance durability is one of the essential requirements for solid oxide fuel cell materials oper...
A novel composite electrode, obtained by combining two high performing perovskite materials, such as...
High-performance and stability for protonic ceramic fuel cell cathode applications are realised in a...
AbstractPerformance durability is one of the essential requirements for solid oxide fuel cell materi...
Ba0.5Sr0.5Co0.8Fe0.2O 3-?? (BSCF) has won tremendous attention as a cathode material for intermediat...
This study focuses on reducing the cathode polarization resistance through the use of mixed ionic el...
Bi doping of SrFeO3−δ results in the formation of a structure with high symmetry and extraordinary e...
Bi doping of SrFeO3d results in the formation of a structure with high symmetry and extraordinary el...
In this study, perovskite Ba0.5Sr0.5Co0.8Fe0.2O3-δ cathode powders were prepared by solid-state reac...
Bi doping of SrFeO3-d results in the formation of a structure with high symmetry and extraordinary e...
The SrCo0.9Sb0.1O3-δ (SCS) composite oxide with cubic perovskite structure was synthesized by a modi...
The B-site substitution with the minor amount of tin in BaFeO3−δ parent oxide is expected to stabili...