Complex perovskite oxides are promising materials for cathode layers in solid oxide fuel cells. Such materials have intricate electronic, magnetic, and crystalline structures that prove challenging to model accurately. We analyze a wide range of standard density functional theory approaches to modeling a highly promising system, the perovskite LaCoO3, focusing on optimizing the Hubbard U parameter to treat the self-interaction of the B-site cation's d states, in order to determine the most appropriate method to study defect formation and the effect of spin on local structure. By calculating structural and electronic properties for different magnetic states we determine that U=4 eV for Co in LaCoO3 agrees best with available experiments. We ...
Transition metal oxides are promising candidates for the next generation of spintronic devices due t...
Two related perovskite material systems were investigated using transmission electron microscopy. La...
Perovskite LaCoO3 is being increasingly explored as an effective low-cost electrocatalyst for the ox...
Complex perovskite oxides are promising materials for cathode layers in solid oxide fuel cells. Such...
Doped LaMnO3 and SmCoO3 are important solid oxide fuel cell cathode materials. The main difference b...
Although solid oxide fuel cells (SOFCs) provide clean and efficient electricity generation, high ope...
Solid oxide fuel cells are an important class of energy conversion devices in the search to replace ...
SmCoO3 is a perovskite material that has gained attention as a potential substitute for La1−xSrxMnO3...
Systematic prediction of the redox reaction energetics of large sets of 3d transition metal oxides i...
The slow rate of oxygen reduction reaction (ORR) at the cathode side has been considered as a scient...
Periodic density functional theory calculations have been performed to examine the effect of oxygen ...
This paper shows that the oxygen vacancies observed experimentally in thin films of LaCoO3 subject t...
Tendencies toward local atomic ordering in (A,A′)(B,B′)O_(3−δ) mixed composition perovskites are mod...
National Natural Science Foundation of China [21033006, 21133004, 21373167]; Ministry of Science and...
Introduction: The focus of this chapter is to introduce the perovskite structure, beginning from the...
Transition metal oxides are promising candidates for the next generation of spintronic devices due t...
Two related perovskite material systems were investigated using transmission electron microscopy. La...
Perovskite LaCoO3 is being increasingly explored as an effective low-cost electrocatalyst for the ox...
Complex perovskite oxides are promising materials for cathode layers in solid oxide fuel cells. Such...
Doped LaMnO3 and SmCoO3 are important solid oxide fuel cell cathode materials. The main difference b...
Although solid oxide fuel cells (SOFCs) provide clean and efficient electricity generation, high ope...
Solid oxide fuel cells are an important class of energy conversion devices in the search to replace ...
SmCoO3 is a perovskite material that has gained attention as a potential substitute for La1−xSrxMnO3...
Systematic prediction of the redox reaction energetics of large sets of 3d transition metal oxides i...
The slow rate of oxygen reduction reaction (ORR) at the cathode side has been considered as a scient...
Periodic density functional theory calculations have been performed to examine the effect of oxygen ...
This paper shows that the oxygen vacancies observed experimentally in thin films of LaCoO3 subject t...
Tendencies toward local atomic ordering in (A,A′)(B,B′)O_(3−δ) mixed composition perovskites are mod...
National Natural Science Foundation of China [21033006, 21133004, 21373167]; Ministry of Science and...
Introduction: The focus of this chapter is to introduce the perovskite structure, beginning from the...
Transition metal oxides are promising candidates for the next generation of spintronic devices due t...
Two related perovskite material systems were investigated using transmission electron microscopy. La...
Perovskite LaCoO3 is being increasingly explored as an effective low-cost electrocatalyst for the ox...