A simulation methodology for calculating the lattice parameter and oxygen ion migration energy of ceria-based electrolyte formulations is devised. The results are analysed and benchmarked against experimentally obtained values to verify the efficacy of the simulation methodology. A total of 26, 2 x 2 x 2 samarium (Sm)- and gadolinium (Gd)-doped supercells of different compositions and doping profiles were modelled and simulated by molecular mechanics force field methods using CP2K. The results of the computational simulations are comparable with those obtained experimentally, especially when there are equal amounts of Sm and Gd dopants in the structure. Simulation results can also provide insights into the mechanisms of ionic conduction. Th...
Solid Oxide Fuel Cells are fuel cells that operate at high temperatures usually in the range of 600o...
Materials with high oxygen ion conductivity and low electronic conductivity are required for electro...
The critical role of the ionic conductivity properties of materials in the development of Intermedia...
A simulation methodology for calculating the lattice parameter and oxygen ion migration energy of ce...
A simulation methodology for calculating the lattice parameter and oxygen ion migration energy of ce...
The depletion of fossil resources as well as issues of global warming have promoted the utilization ...
As the demand for clean and renewable energy sources continues to grow, much attention has been give...
Solid oxide fuel cells are considered as one of the main alternatives for future sources of clean en...
abstract: Fuel cells, particularly solid oxide fuel cells (SOFC), are important for the future of gr...
Sm-doped ceria is a prospective electrolyte material for intermediate-temperature solid-oxide fuel c...
abstract: In this study, the viability of doped ceria for SOFC electrolyte application is investigat...
Solid oxide electrolyser cell (SOEC) is regarded as a promising device for future energy storage and...
International audienceOne of the key objectives in developing solid oxide fuel cells and oxygen memb...
The reliable use of alternative solid electrolytes in an intermediate temperature range, namely 600-...
The quantitative description of the transport mechanisms in solid oxide fuel cells (SOFCs) is releva...
Solid Oxide Fuel Cells are fuel cells that operate at high temperatures usually in the range of 600o...
Materials with high oxygen ion conductivity and low electronic conductivity are required for electro...
The critical role of the ionic conductivity properties of materials in the development of Intermedia...
A simulation methodology for calculating the lattice parameter and oxygen ion migration energy of ce...
A simulation methodology for calculating the lattice parameter and oxygen ion migration energy of ce...
The depletion of fossil resources as well as issues of global warming have promoted the utilization ...
As the demand for clean and renewable energy sources continues to grow, much attention has been give...
Solid oxide fuel cells are considered as one of the main alternatives for future sources of clean en...
abstract: Fuel cells, particularly solid oxide fuel cells (SOFC), are important for the future of gr...
Sm-doped ceria is a prospective electrolyte material for intermediate-temperature solid-oxide fuel c...
abstract: In this study, the viability of doped ceria for SOFC electrolyte application is investigat...
Solid oxide electrolyser cell (SOEC) is regarded as a promising device for future energy storage and...
International audienceOne of the key objectives in developing solid oxide fuel cells and oxygen memb...
The reliable use of alternative solid electrolytes in an intermediate temperature range, namely 600-...
The quantitative description of the transport mechanisms in solid oxide fuel cells (SOFCs) is releva...
Solid Oxide Fuel Cells are fuel cells that operate at high temperatures usually in the range of 600o...
Materials with high oxygen ion conductivity and low electronic conductivity are required for electro...
The critical role of the ionic conductivity properties of materials in the development of Intermedia...