Understanding the oxygen uptake/release mechanism in oxygen storage materials is of great importance in the design of energy-related materials and their corresponding applications. In this work, the effects of Ga doping amount on the oxygen storage capacity and thermal stability of Ca2(Al1-xGax)MnO5+δ (0 ≤ x ≤ 1) with a brownmillerite-type structure were investigated. Ca2AlMnO5+δ can reversibly store/release a large amount of excess oxygen (∼3.0 wt%) at low temperature (between 300 and 600 °C) under oxidative atmospheres. With the increasing Ga doping amount in Ca2(Al1-xGax)MnO5+δ, these materials uptake less oxygen at higher temperature which can be attributed to the difficulty in the oxidation of tetrahedral GaO4 blocks into octahedral Ga...
We have studied the reversible uptake and release of oxygen in the layered metal oxide system AB2O4...
The authors gratefully thank the Engineering and Physical Sciences Research Council (EPSRC) platform...
7 figures, 6 tables.-- © 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...
Brownmillerite Ca<sub>2</sub>MnAlO<sub>5</sub> has an exceptional capability to robustly adsorb half...
We investigated the atomic and local electronic structures of Ca<sub>2</sub>AlMnO<sub>5+δ</sub> to a...
The development of energy storage and conversion techniques with high efficiency and power density i...
The order-disorder transition of Brownmillerite (BM)-type oxides have gained attraction for oxygen e...
Brownmillerite (BM)-type oxide sorbents have gained attention recently for producing oxygen-enriched...
Perovskite oxides CaMnO3 and Ca0.8Sr0.2MnO3 show continuous non-stoichiometry over a range of temper...
Low-cost, environmental-friendly, oxide compositions capable of reversible reduction/oxidation under...
Brownmillerite (BM)-type oxide sorbents have gained attention recently for producing oxygen-enriched...
Perovskite oxides CaMnO<sub>3</sub> and Ca<sub>0.8</sub>Sr<sub>0.2</sub>MnO<sub>3</sub> show continu...
Ca-Mn-based perovskites doped in their A- and B-site were synthesized and comparatively tested versu...
Single-phase polycrystalline samples of stoichiometric <i>R</i>MnO<sub>3+δ</sub> (<i>R</i> = Er, Y, ...
The reactivity and attrition resistance of Mn–Fe oxygen carriers with addition of Al2O3 as support h...
We have studied the reversible uptake and release of oxygen in the layered metal oxide system AB2O4...
The authors gratefully thank the Engineering and Physical Sciences Research Council (EPSRC) platform...
7 figures, 6 tables.-- © 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...
Brownmillerite Ca<sub>2</sub>MnAlO<sub>5</sub> has an exceptional capability to robustly adsorb half...
We investigated the atomic and local electronic structures of Ca<sub>2</sub>AlMnO<sub>5+δ</sub> to a...
The development of energy storage and conversion techniques with high efficiency and power density i...
The order-disorder transition of Brownmillerite (BM)-type oxides have gained attraction for oxygen e...
Brownmillerite (BM)-type oxide sorbents have gained attention recently for producing oxygen-enriched...
Perovskite oxides CaMnO3 and Ca0.8Sr0.2MnO3 show continuous non-stoichiometry over a range of temper...
Low-cost, environmental-friendly, oxide compositions capable of reversible reduction/oxidation under...
Brownmillerite (BM)-type oxide sorbents have gained attention recently for producing oxygen-enriched...
Perovskite oxides CaMnO<sub>3</sub> and Ca<sub>0.8</sub>Sr<sub>0.2</sub>MnO<sub>3</sub> show continu...
Ca-Mn-based perovskites doped in their A- and B-site were synthesized and comparatively tested versu...
Single-phase polycrystalline samples of stoichiometric <i>R</i>MnO<sub>3+δ</sub> (<i>R</i> = Er, Y, ...
The reactivity and attrition resistance of Mn–Fe oxygen carriers with addition of Al2O3 as support h...
We have studied the reversible uptake and release of oxygen in the layered metal oxide system AB2O4...
The authors gratefully thank the Engineering and Physical Sciences Research Council (EPSRC) platform...
7 figures, 6 tables.-- © 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...