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A and B site Co-doping of CaMnO3: a route to enhanced heat storage properties

doi: 10.1039/d2ta07779e
handle: 10261/357687 , 11570/3256496
By co-doping CaMnO3 with La and Fe (LaxCa1−xMn1−yFeyO3), it is possible to tailor the material thermodynamics, reduction extent, together with operating temperature range for thermochemical heat storage application.
- Spanish National Research Council Spain
- University of Messina Italy
- Northwestern University United States
- Instituto de Catálisis y Petroleoquímica Spain
- University of Messina Italy
Thermo-chemical heat storages, Manganese compounds, Calcium compounds, Concentrated solar power, Heat storage, High temperature applications, Iron, Lanthanum compounds, Solar energy, Storage (materials), X ray absorption spectroscopy, Concentrating solar power plant, Calcium compounds, High temperature applications, Iron, reductions, Lanthanum compounds, Storage properties, Temperature window, Solar energy, Storage (materials), X ray absorption spectroscopy, Heat storage capacity, Operating temperature ranges, Co-doping, Commercialisation, Heat storage, Concentrated solar power, Effective energy
Thermo-chemical heat storages, Manganese compounds, Calcium compounds, Concentrated solar power, Heat storage, High temperature applications, Iron, Lanthanum compounds, Solar energy, Storage (materials), X ray absorption spectroscopy, Concentrating solar power plant, Calcium compounds, High temperature applications, Iron, reductions, Lanthanum compounds, Storage properties, Temperature window, Solar energy, Storage (materials), X ray absorption spectroscopy, Heat storage capacity, Operating temperature ranges, Co-doping, Commercialisation, Heat storage, Concentrated solar power, Effective energy
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