The effects of doping manganese ions into a cerium oxide lattice for a thermochemical two-step water-splitting cycle to produce oxygen and hydrogen and new synthesis methods were experimentally investigated. In order to comparison of oxygen/hydrogen producing performance, pristine CeO2, a coprecipitation method for Mn-CeO2, and a direct depositing method for Mn-CeO2 with different particle sizes (50~75, 100–212, over 212 μm) and doping extents (0, 5, 15 mol%) were tested in the context of synthesis and fabrication processes of reactive metal oxide coated ceramic foam devices. Sample powders were coated onto zirconia (magnesium partially stabilized zirconia oxide, MPSZ) porous foam at 30 weight percent using spin coating or a direct depositi...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
Cerium based oxides have recently emerged as highly attractive choice for two-steps thermochemical w...
Methane reforming is an industrial process for hydrogen production having a high CO2 footprint that ...
AbstractThe joint international project of Niigata University (Japan) – Korea Institute of Energy Re...
AbstractNickel ferrite (NiFe2O4) and pure cerium oxide (CeO2) supported on monoclinic zirconia (NiFe...
The three chemical reactions of a new Mn-oxide based thermochemical cycle for sustainable H2 product...
Over the past decade, nonstoichiometric oxides have been investigated for solar thermochemical water...
A novel surfactant-assisted synthesis method was developed in our laboratory to enhance the oxygen s...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
ABSTRACT: Water splitting by solar energy-driven two-step thermochemical cycles is a promising appro...
Efficient storage of solar and wind power is one of the most challenging tasks still limiting the ut...
DLR is building the world’s biggest solar simulator in Jülich, Germany, with a thermal power output ...
Sol-gel processing of ordered MnO2 structures toward enhanced O2 reduction catalysis for air batte...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
Cerium based oxides have recently emerged as highly attractive choice for two-steps thermochemical w...
Methane reforming is an industrial process for hydrogen production having a high CO2 footprint that ...
AbstractThe joint international project of Niigata University (Japan) – Korea Institute of Energy Re...
AbstractNickel ferrite (NiFe2O4) and pure cerium oxide (CeO2) supported on monoclinic zirconia (NiFe...
The three chemical reactions of a new Mn-oxide based thermochemical cycle for sustainable H2 product...
Over the past decade, nonstoichiometric oxides have been investigated for solar thermochemical water...
A novel surfactant-assisted synthesis method was developed in our laboratory to enhance the oxygen s...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
ABSTRACT: Water splitting by solar energy-driven two-step thermochemical cycles is a promising appro...
Efficient storage of solar and wind power is one of the most challenging tasks still limiting the ut...
DLR is building the world’s biggest solar simulator in Jülich, Germany, with a thermal power output ...
Sol-gel processing of ordered MnO2 structures toward enhanced O2 reduction catalysis for air batte...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
Cerium based oxides have recently emerged as highly attractive choice for two-steps thermochemical w...
Methane reforming is an industrial process for hydrogen production having a high CO2 footprint that ...