The effect of water on iron-based nanoparticles under hydrogen and syngas was investigated by in situ X-ray absorption spectroscopy. The iron oxide (¿-Fe2O3) nanoparticles, dispersed as a monolayer on flat silica surfaces, were readily converted into metallic iron in dry hydrogen at 350 °C and into iron carbide in dry syngas (H2/CO 2/1 vol/vol) at 325 °C. However, in the presence of water, the reduction did not proceed beyond magnetite (Fe3O4) up to 350 °C. Wustite (Fe(II)O or FeO(1–x)) was formed at 450 °C in wet syngas and 550 °C in wet hydrogen. Once formed, the iron carbide nanoparticles proved remarkably stable against oxidation in wet syngas at 350 °C. However, we observed the formation of a surface iron(II) oxide phase that increases...
none7siFeCo2O4and CoFe2O4nanoparticles have been studied as oxygen carriers for the Chemical Loop Re...
In this work, a novel way to indirectly store and produce H2 from ethanol was investigated using a t...
In this work, the reduction of iron oxide γ-Fe2O3 nanoparticles by hydrogen at high pressures is stu...
The effect of water on iron-based nanoparticles under hydrogen and syngas was investigated by in sit...
International audienceThe carbidization of Fe(0) nanoparticles (NPs) under syngas (CO/H2) produces c...
Due to their unique properties, iron nanoparticles find diverse applications across various fields,...
The oxidation of solution-synthesized iron (Fe) and iron carbide (Fe2C) nanoparticles was studied in...
International audienceOxidation behavior of nano-Fe-0 particles in an anoxic environment was determi...
While it has been recognized for some time that addition of nanoparticlate zerovalent iron (nZVI) to...
CO2 Fischer–Tropsch synthesis (CO2–FTS) is a promising technology enabling conversion of CO2 into va...
Iron-based catalysts are considered active for the hydrogenation of CO2 toward high-order hydrocarbo...
Iron plays a vital role in natural processes such as water, mineral, iron, and nutrient cycles. Iron...
Hydrogen gas is an essential reagent in numerous industrial processes including ammonia synthesis. A...
Iron (Fe) oxides and hydroxides are common and abundant materials. They exhibit diverse crystal stru...
Developing efficient water oxidation catalysts (WOCs) with earth-abundant elements still remains a c...
none7siFeCo2O4and CoFe2O4nanoparticles have been studied as oxygen carriers for the Chemical Loop Re...
In this work, a novel way to indirectly store and produce H2 from ethanol was investigated using a t...
In this work, the reduction of iron oxide γ-Fe2O3 nanoparticles by hydrogen at high pressures is stu...
The effect of water on iron-based nanoparticles under hydrogen and syngas was investigated by in sit...
International audienceThe carbidization of Fe(0) nanoparticles (NPs) under syngas (CO/H2) produces c...
Due to their unique properties, iron nanoparticles find diverse applications across various fields,...
The oxidation of solution-synthesized iron (Fe) and iron carbide (Fe2C) nanoparticles was studied in...
International audienceOxidation behavior of nano-Fe-0 particles in an anoxic environment was determi...
While it has been recognized for some time that addition of nanoparticlate zerovalent iron (nZVI) to...
CO2 Fischer–Tropsch synthesis (CO2–FTS) is a promising technology enabling conversion of CO2 into va...
Iron-based catalysts are considered active for the hydrogenation of CO2 toward high-order hydrocarbo...
Iron plays a vital role in natural processes such as water, mineral, iron, and nutrient cycles. Iron...
Hydrogen gas is an essential reagent in numerous industrial processes including ammonia synthesis. A...
Iron (Fe) oxides and hydroxides are common and abundant materials. They exhibit diverse crystal stru...
Developing efficient water oxidation catalysts (WOCs) with earth-abundant elements still remains a c...
none7siFeCo2O4and CoFe2O4nanoparticles have been studied as oxygen carriers for the Chemical Loop Re...
In this work, a novel way to indirectly store and produce H2 from ethanol was investigated using a t...
In this work, the reduction of iron oxide γ-Fe2O3 nanoparticles by hydrogen at high pressures is stu...