Doped LaMnO3 and SmCoO3 are important solid oxide fuel cell cathode materials. The main difference between these two perovskites is that SmCoO3 has proven to be a more efficient cathode material than LaMnO3 at lower temperatures. In order to explain the difference in efficiency, we need to gain insight into the materials’ properties at the atomic level. However, while LaMnO3 has been widely studied, ab initio studies on SmCoO3 are rare. Hence, in this paper, we perform a comparative DFT + U study of the structural, electronic, and magnetic properties of these two perovskites. To that end, we first determined a suitable Hubbard parameter for the Co d–electrons to obtain a proper description of SmCoO3 that fully agrees with the available expe...
One of the main challenges facing solid oxide fuel cell (SOFC) technology is the need to develop mat...
We characterize the structural, electronic, and defect behavior of La1–xSrxMnO3 (LSM) (xSr = 0.0, 0....
Although solid oxide fuel cells (SOFCs) provide clean and efficient electricity generation, high ope...
Doped LaMnO3 and SmCoO3 are important solid oxide fuel cell cathode materials. The main difference b...
SmCoO3 is a perovskite material that has gained attention as a potential substitute for La1−xSrxMnO3...
This thesis presents the results of a computational study of bulk SmCoO3-based perovskites for use a...
SmCoO3 is a promising perovskite material for the next generation of intermediate temperature solid ...
SmCoO3 is a promising perovskite material for the next generation of intermediate temperature solid ...
The substitutional doping of Ca2+, Sr2+, and Ba2+ on the Sm-site in the cubic perovskite SmCoO3 is r...
Complex perovskite oxides are promising materials for cathode layers in solid oxide fuel cells. Such...
We present a Hubbard-corrected density functional theory (DFT+U) study of the adsorption and reducti...
One of the main challenges facing solid oxide fuel cell (SOFC) technology is the need to develop mat...
One of the main challenges facing solid oxide fuel cell (SOFC) technology is the need to develop mat...
We characterize the structural, electronic, and defect behavior of La1–xSrxMnO3 (LSM) (xSr = 0.0, 0....
Although solid oxide fuel cells (SOFCs) provide clean and efficient electricity generation, high ope...
Doped LaMnO3 and SmCoO3 are important solid oxide fuel cell cathode materials. The main difference b...
SmCoO3 is a perovskite material that has gained attention as a potential substitute for La1−xSrxMnO3...
This thesis presents the results of a computational study of bulk SmCoO3-based perovskites for use a...
SmCoO3 is a promising perovskite material for the next generation of intermediate temperature solid ...
SmCoO3 is a promising perovskite material for the next generation of intermediate temperature solid ...
The substitutional doping of Ca2+, Sr2+, and Ba2+ on the Sm-site in the cubic perovskite SmCoO3 is r...
Complex perovskite oxides are promising materials for cathode layers in solid oxide fuel cells. Such...
We present a Hubbard-corrected density functional theory (DFT+U) study of the adsorption and reducti...
One of the main challenges facing solid oxide fuel cell (SOFC) technology is the need to develop mat...
One of the main challenges facing solid oxide fuel cell (SOFC) technology is the need to develop mat...
We characterize the structural, electronic, and defect behavior of La1–xSrxMnO3 (LSM) (xSr = 0.0, 0....
Although solid oxide fuel cells (SOFCs) provide clean and efficient electricity generation, high ope...