The perovskite oxide SrFeO3 has favourable redox properties for oxygen exchange applications, including oxygen separation and oxygen production chemical looping cycles. For such applications, lower temperature operation can improve the energy demand and feasibility of the process, but can also lead to kinetic limitations. Here we investigate the oxidation and reduction reaction kinetics of SrFeO3 in the temperature range 450–750 K. Isothermal relaxation techniques are used to observe the reaction rates across this temperature range, using a thermogravimetric analysis system. Experimental data are analysed according to an isoconversional method and fit with a simple power law model to extract activation energies. The apparent activation ener...
Sr1+xCo0.8Fe0.2O3 (0.2 <= x <= 0.1) oxides have been synthesized and investigated as potential oxyge...
Perovskite oxides CaMnO3 and Ca0.8Sr0.2MnO3 show continuous non-stoichiometry over a range of temper...
Perovskite oxide surfaces catalyze oxygen exchange reactions that are crucial for fuel cells, electr...
The perovskite oxide SrFeO3 has favourable redox properties for oxygen exchange applications, includ...
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...
The achievement of low oxygen partial pressures is beneficial in a number of applications, including...
The oxygen uptake and release of La1-xSrxCo1-yFeyO3-delta (x=0.2, 0.4; y=0, 0.8, 1) perovskite powde...
The oxygen surface exchange kinetics of mixed conducting perovskite oxides SrTi1−xFexO3−δ (x = 0, 0....
Perovskite oxides with temperature and oxygen partial pressure dependent non‐stoichiometry δ, such a...
The combustion of fuel in oxygen rather than in air is one route to allow for the large-scale captur...
Perovskite-structured materials, owing to their chemical–physical properties and tuneable compositio...
Perovskites AMO3�d are ideal for thermochemical air separation due to their oxygen nonstoichiometry ...
The use of perovskite materials for thermochemical energy storage and oxygen separation has been gai...
Sr1+xCo0.8Fe0.2O3 (0.2 <= x <= 0.1) oxides have been synthesized and investigated as potential oxyge...
Perovskite oxides CaMnO3 and Ca0.8Sr0.2MnO3 show continuous non-stoichiometry over a range of temper...
Perovskite oxide surfaces catalyze oxygen exchange reactions that are crucial for fuel cells, electr...
The perovskite oxide SrFeO3 has favourable redox properties for oxygen exchange applications, includ...
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...
The achievement of low oxygen partial pressures is beneficial in a number of applications, including...
The oxygen uptake and release of La1-xSrxCo1-yFeyO3-delta (x=0.2, 0.4; y=0, 0.8, 1) perovskite powde...
The oxygen surface exchange kinetics of mixed conducting perovskite oxides SrTi1−xFexO3−δ (x = 0, 0....
Perovskite oxides with temperature and oxygen partial pressure dependent non‐stoichiometry δ, such a...
The combustion of fuel in oxygen rather than in air is one route to allow for the large-scale captur...
Perovskite-structured materials, owing to their chemical–physical properties and tuneable compositio...
Perovskites AMO3�d are ideal for thermochemical air separation due to their oxygen nonstoichiometry ...
The use of perovskite materials for thermochemical energy storage and oxygen separation has been gai...
Sr1+xCo0.8Fe0.2O3 (0.2 <= x <= 0.1) oxides have been synthesized and investigated as potential oxyge...
Perovskite oxides CaMnO3 and Ca0.8Sr0.2MnO3 show continuous non-stoichiometry over a range of temper...
Perovskite oxide surfaces catalyze oxygen exchange reactions that are crucial for fuel cells, electr...