Reactive oxygen species (ROS) are considered to be responsible for the high catalytic activity of transition metal oxides like Co3-xFexO4 in oxidation reactions, but the detailed influences of catalyst composition and morphology on the formation of these reactive oxygen species are not fully understood. In the presented study, Co3O4 spinels of different mesostructures, i.e., particle size, crystallinity, and specific surface area, are characterized by powder X-ray diffraction, scanning electron microscopy, and physisorption. The materials were tested in CO oxidation performed in consecutive runs and compared to a Co3-xFexO4 composition series with a similar mesostructure to study the effects of catalyst morphology and composition on ROS for...
Co3O4 catalysts were prepared by combustion synthesis using different fuels glycine (G), ODH (O) and...
Co3O4 catalysts were prepared by combustion synthesis using different fuels glycine (G), ODH (O) and...
Co<sub>3</sub>O<sub>4</sub> with a spinel structure is a very active oxide catalyst for the oxidatio...
Reactive oxygen species (ROS) are considered to be responsible for the high catalytic activity of tr...
Reactive oxygen species (ROS) are considered to be responsible for the high catalytic activity of tr...
Co3O4 with spinel structure shows CO oxidation activity at very low temperature under dry conditions...
Co3O4 with spinel structure shows CO oxidation activity at very low temperature under dry conditions...
Co3O4 with spinel structure shows CO oxidation activity at very low temperature under dry conditions...
Co3O4 with spinel structure shows CO oxidation activity at very low temperature under dry condition....
Co<sub>3</sub>O<sub>4</sub> with a spinel structure is a very active oxide catalyst for the oxidatio...
Co3O4 with a spinel structure is a very active oxide catalyst for the oxidation of CO. In such catal...
Co3O4 with a spinel structure shows unique activity for CO oxidation at low temperature under dry co...
Co3O4 with a spinel structure shows unique activity for CO oxidation at low temperature under dry co...
In this work, a statistical design and analysis platform was used to develop cobalt oxide based oxid...
Increasing CO emission from urban and industrial development as well as motor vehicles creates a maj...
Co3O4 catalysts were prepared by combustion synthesis using different fuels glycine (G), ODH (O) and...
Co3O4 catalysts were prepared by combustion synthesis using different fuels glycine (G), ODH (O) and...
Co<sub>3</sub>O<sub>4</sub> with a spinel structure is a very active oxide catalyst for the oxidatio...
Reactive oxygen species (ROS) are considered to be responsible for the high catalytic activity of tr...
Reactive oxygen species (ROS) are considered to be responsible for the high catalytic activity of tr...
Co3O4 with spinel structure shows CO oxidation activity at very low temperature under dry conditions...
Co3O4 with spinel structure shows CO oxidation activity at very low temperature under dry conditions...
Co3O4 with spinel structure shows CO oxidation activity at very low temperature under dry conditions...
Co3O4 with spinel structure shows CO oxidation activity at very low temperature under dry condition....
Co<sub>3</sub>O<sub>4</sub> with a spinel structure is a very active oxide catalyst for the oxidatio...
Co3O4 with a spinel structure is a very active oxide catalyst for the oxidation of CO. In such catal...
Co3O4 with a spinel structure shows unique activity for CO oxidation at low temperature under dry co...
Co3O4 with a spinel structure shows unique activity for CO oxidation at low temperature under dry co...
In this work, a statistical design and analysis platform was used to develop cobalt oxide based oxid...
Increasing CO emission from urban and industrial development as well as motor vehicles creates a maj...
Co3O4 catalysts were prepared by combustion synthesis using different fuels glycine (G), ODH (O) and...
Co3O4 catalysts were prepared by combustion synthesis using different fuels glycine (G), ODH (O) and...
Co<sub>3</sub>O<sub>4</sub> with a spinel structure is a very active oxide catalyst for the oxidatio...