Perovskites are attractive redox materials for thermo/electrochemical fuel synthesis. To design perovskites with balanced redox energetics for thermochemically splitting CO2, the activity of lattice oxygen vacancies and stability against crystal phase changes and detrimental carbonate formation are predicted for a representative range of perovskites by electronic structure computations. Systematic trends in these materials properties when doping with selected metal cations are described in the free energy range defined for isothermal and temperature-swing redox cycles. To confirm that the predicted materials properties root in the bulk chemical composition, selected perovskites are synthesized and characterized by X-ray diffraction, transmi...
International audienceThe investigation and optimization of solar fuels production by H 2 O and CO 2...
International audienceThe investigation and optimization of solar fuels production by H 2 O and CO 2...
An efficient redox material for two-step thermochemical CO2 splitting reaction requires high chemica...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Thermochemical splitting of CO2 and H2O via two‐step metal oxide redox cycles offers a promising app...
Perovskite oxides constitute a large and well known group of materials, with many valuable applicati...
Sustainable energy supply is a crucial issue in times of climate change and receding fossil energy r...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Due to the requirement to develop carbon-free energy, solar energy conversion into chemical energy c...
A carbon-neutral fuel is desired when it comes to solving the issues associated with climate change....
International audienceThe investigation and optimization of solar fuels production by H 2 O and CO 2...
International audienceThe investigation and optimization of solar fuels production by H 2 O and CO 2...
An efficient redox material for two-step thermochemical CO2 splitting reaction requires high chemica...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Thermochemical splitting of CO2 and H2O via two‐step metal oxide redox cycles offers a promising app...
Perovskite oxides constitute a large and well known group of materials, with many valuable applicati...
Sustainable energy supply is a crucial issue in times of climate change and receding fossil energy r...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Thermochemical splitting of CO2 and H2O via two-step metal oxide redox cycles offers a promising app...
Due to the requirement to develop carbon-free energy, solar energy conversion into chemical energy c...
A carbon-neutral fuel is desired when it comes to solving the issues associated with climate change....
International audienceThe investigation and optimization of solar fuels production by H 2 O and CO 2...
International audienceThe investigation and optimization of solar fuels production by H 2 O and CO 2...
An efficient redox material for two-step thermochemical CO2 splitting reaction requires high chemica...