Perovskites are well-known oxides for thermochemical energy storage applications (TCES) since they show a great potential for spontaneous O2 release due to their non-stoichiometry. Transition-metal-based perovskites are particularly promising candidates for TCES owing to their different oxidation states. It is important to test the thermal behavior of the perovskites for TCES applications; however, the amount of sample that can be used in thermal analyses is limited. The use of redox cycles in fluidized bed tests can offer a more realistic approach, since a larger amount of sample can be used to test the cyclic behavior of the perovskites. In this study, the oxygen release/consumption behavior of Mn-or Cu-substituted SrFeO3 (SrFe0.5M0.5O3; ...
Concentrated solar power is capable of providing high-temperature process streams to different appli...
Perovskites AMO3�d are ideal for thermochemical air separation due to their oxygen nonstoichiometry ...
Thermochemical energy storage is promising for the long-term storage of solar energy via chemical bo...
Perovskites are well-known oxides for thermochemical energy storage applications (TCES) since they s...
Low-cost, environmental-friendly, oxide compositions capable of reversible reduction/oxidation under...
Ca-Mn-based perovskites doped in their A- and B-site were synthesized and comparatively tested versu...
Perovskite oxides with temperature and oxygen partial pressure dependent non‐stoichiometry δ, such a...
Perovskite oxides with temperature and oxygen partial pressure dependent non stoichiometry amp; 94...
Perovskite oxides with temperature and oxygen partial pressure dependent non‐stoichiometry δ, such a...
Perovskite oxides with temperature and oxygen partial pressure dependent non‐stoichiometry δ, such a...
Perovskite-structured materials, owing to their chemical–physical properties and tuneable compositio...
Metal oxides are potential materials for thermochemical heat storage via reversible endothermal/exot...
[EN] Widening the use of renewable sources requires more efficient energy storage systems to overcom...
New perovskite oxides SrFe0.7TM0.2Ti0.1O3-δ (TM = Mn, Fe, Co, Ni, Cu) were synthesised by sol-gel pr...
Thermochemical energy storage (TCES) can be achieved via reversible redox reactions based on metal o...
Concentrated solar power is capable of providing high-temperature process streams to different appli...
Perovskites AMO3�d are ideal for thermochemical air separation due to their oxygen nonstoichiometry ...
Thermochemical energy storage is promising for the long-term storage of solar energy via chemical bo...
Perovskites are well-known oxides for thermochemical energy storage applications (TCES) since they s...
Low-cost, environmental-friendly, oxide compositions capable of reversible reduction/oxidation under...
Ca-Mn-based perovskites doped in their A- and B-site were synthesized and comparatively tested versu...
Perovskite oxides with temperature and oxygen partial pressure dependent non‐stoichiometry δ, such a...
Perovskite oxides with temperature and oxygen partial pressure dependent non stoichiometry amp; 94...
Perovskite oxides with temperature and oxygen partial pressure dependent non‐stoichiometry δ, such a...
Perovskite oxides with temperature and oxygen partial pressure dependent non‐stoichiometry δ, such a...
Perovskite-structured materials, owing to their chemical–physical properties and tuneable compositio...
Metal oxides are potential materials for thermochemical heat storage via reversible endothermal/exot...
[EN] Widening the use of renewable sources requires more efficient energy storage systems to overcom...
New perovskite oxides SrFe0.7TM0.2Ti0.1O3-δ (TM = Mn, Fe, Co, Ni, Cu) were synthesised by sol-gel pr...
Thermochemical energy storage (TCES) can be achieved via reversible redox reactions based on metal o...
Concentrated solar power is capable of providing high-temperature process streams to different appli...
Perovskites AMO3�d are ideal for thermochemical air separation due to their oxygen nonstoichiometry ...
Thermochemical energy storage is promising for the long-term storage of solar energy via chemical bo...