Solar thermochemical hydrogen generation (STCH) is a promising approach for eco-friendly H2 production, but conventional STCH redox compounds often suffer from thermodynamic and kinetic limitations with limited tunability. Expanding from the nascent high-entropy ceramics field, this study explores a new class of compositionally complex perovskite oxides (La0.8Sr0.2)(Mn(1-x)/3Fe(1-x)/3CoxAl(1-x)/3)O3 for STCH. In situ X-ray diffraction demonstrates the phase stability during redox cycling and in situ X-ray photoelectron spectroscopy shows preferential redox of Co. The extent of reduction increases, but the intrinsic kinetics decreases, with increased Co content. Consequently, (La0.8Sr0.2)(Mn0.2Fe0.2Co0.4Al0.2)O3-{\delta} achieves an optimal ...
Due to the requirement to develop carbon-free energy, solar energy conversion into chemical energy c...
Solar-driven thermochemical water splitting using non-stoichiometric oxides has emerged as an attrac...
Thermochemical splitting of CO2 and H2O via two‐step metal oxide redox cycles offers a promising app...
Non-stoichiometric perovskite oxides have been studied as a new family of redox oxides for solar the...
Solar thermochemical hydrogen (STCH) production is a promising method to generate carbon neutral fue...
In this project, we designed, synthesized, and tested the transformative (La0.8Sr0.2)(Mn[1-x]/3Fe[1-...
The solar energy is, by far, the most abundant renewable energy source. Thus, our challenge is to ca...
International audienceThe main challenges and obstacles to the development of hydrogen/carbon monoxi...
Materials with the formula Sr_2CoNb_1-xTi_xO_(6-delta) (x=1.00, 0.70; delta=number of oxygen vacanci...
Redox reactivity of La(1-x)SrxMnO3 (LSM) perovskites towards a solar thermochemical CO2 splitting (C...
Two-step thermochemical water splitting is a promising technology for the hydrogen production of sol...
Redox reactivity of La(1-x)SrxMnO3 (LSM) perovskites towards a solar thermochemical CO2 splitting (C...
Photoelectrochemical (PEC) water splitting, termed artificial photosynthesis, converts solar energy ...
Sustainable energy supply is a crucial issue in times of climate change and receding fossil energy r...
Perovskites are attractive redox materials for thermo/electrochemical fuel synthesis. To design pero...
Due to the requirement to develop carbon-free energy, solar energy conversion into chemical energy c...
Solar-driven thermochemical water splitting using non-stoichiometric oxides has emerged as an attrac...
Thermochemical splitting of CO2 and H2O via two‐step metal oxide redox cycles offers a promising app...
Non-stoichiometric perovskite oxides have been studied as a new family of redox oxides for solar the...
Solar thermochemical hydrogen (STCH) production is a promising method to generate carbon neutral fue...
In this project, we designed, synthesized, and tested the transformative (La0.8Sr0.2)(Mn[1-x]/3Fe[1-...
The solar energy is, by far, the most abundant renewable energy source. Thus, our challenge is to ca...
International audienceThe main challenges and obstacles to the development of hydrogen/carbon monoxi...
Materials with the formula Sr_2CoNb_1-xTi_xO_(6-delta) (x=1.00, 0.70; delta=number of oxygen vacanci...
Redox reactivity of La(1-x)SrxMnO3 (LSM) perovskites towards a solar thermochemical CO2 splitting (C...
Two-step thermochemical water splitting is a promising technology for the hydrogen production of sol...
Redox reactivity of La(1-x)SrxMnO3 (LSM) perovskites towards a solar thermochemical CO2 splitting (C...
Photoelectrochemical (PEC) water splitting, termed artificial photosynthesis, converts solar energy ...
Sustainable energy supply is a crucial issue in times of climate change and receding fossil energy r...
Perovskites are attractive redox materials for thermo/electrochemical fuel synthesis. To design pero...
Due to the requirement to develop carbon-free energy, solar energy conversion into chemical energy c...
Solar-driven thermochemical water splitting using non-stoichiometric oxides has emerged as an attrac...
Thermochemical splitting of CO2 and H2O via two‐step metal oxide redox cycles offers a promising app...