Summarization: The production of syngas (H2 and CO)—a key building block for the manufacture of liquid energy carriers, ammonia and hydrogen—through the dry (CO2−) reforming of methane (DRM) continues to gain attention in heterogeneous catalysis, renewable energy technologies and sustainable economy. Here we report on the effects of the metal oxide support (γ-Al2O3, alumina-ceria-zirconia (ACZ) and ceria-zirconia (CZ)) on the low-temperature (ca. 500–750 ∘C) DRM activity, selectivity, resistance against carbon deposition and iridium nanoparticles sintering under oxidative thermal aging. A variety of characterization techniques were implemented to provide insight into the factors that determine iridium intrinsic DRM kinetics and stability, i...
Summarization: The effect of the morphology of Ir particles supported on γ-Al2O3, 8 mol%Y2O3-stabili...
The grafting of an iridium–aluminium precursor onto silica followed by thermal treatment under H2 yi...
Encapsulation of metal nanoparticles is a leading technique used to inhibit the main deactivation me...
The production of syngas (H2 and CO)—a key building block for the manufacture of liquid energy carri...
The production of syngas (H2 and CO)-a key building block for the manufacture of liquid energy carri...
The production of syngas (H2 and CO)—a key building block for the manufacture of liquid energy carri...
The metal-support interaction of Ir/Ce0.9Pr0.1O2 catalyst is tuned by adopting different preparation...
Methane dry reforming reaction was investigated over Ir catalysts supported on ceria-based solid sol...
The effects of the metal oxide support on the activity, selectivity, resistance to carbon deposition...
In this study, the use of a thermally stable Ir/Ce0.9La0.1O2 catalyst was investigated for the dry r...
Two major green house gases (CO2 and CH4) can be converted into useful synthetic gas (H2 and CO) dur...
Specificity of CH4 dry reforming mechanism for Me-supported doped ceria-zirconia catalysts with high...
Finding sustainable routes for the transformation of CO2 into fuels and added-value chemicals is key...
Solar-driven photothermochemical dry reforming of methane (PTC-DRM) has attracted increasing attenti...
CO2 reforming of methane is attractive, because it can convert two greenhouse gases into synthesis g...
Summarization: The effect of the morphology of Ir particles supported on γ-Al2O3, 8 mol%Y2O3-stabili...
The grafting of an iridium–aluminium precursor onto silica followed by thermal treatment under H2 yi...
Encapsulation of metal nanoparticles is a leading technique used to inhibit the main deactivation me...
The production of syngas (H2 and CO)—a key building block for the manufacture of liquid energy carri...
The production of syngas (H2 and CO)-a key building block for the manufacture of liquid energy carri...
The production of syngas (H2 and CO)—a key building block for the manufacture of liquid energy carri...
The metal-support interaction of Ir/Ce0.9Pr0.1O2 catalyst is tuned by adopting different preparation...
Methane dry reforming reaction was investigated over Ir catalysts supported on ceria-based solid sol...
The effects of the metal oxide support on the activity, selectivity, resistance to carbon deposition...
In this study, the use of a thermally stable Ir/Ce0.9La0.1O2 catalyst was investigated for the dry r...
Two major green house gases (CO2 and CH4) can be converted into useful synthetic gas (H2 and CO) dur...
Specificity of CH4 dry reforming mechanism for Me-supported doped ceria-zirconia catalysts with high...
Finding sustainable routes for the transformation of CO2 into fuels and added-value chemicals is key...
Solar-driven photothermochemical dry reforming of methane (PTC-DRM) has attracted increasing attenti...
CO2 reforming of methane is attractive, because it can convert two greenhouse gases into synthesis g...
Summarization: The effect of the morphology of Ir particles supported on γ-Al2O3, 8 mol%Y2O3-stabili...
The grafting of an iridium–aluminium precursor onto silica followed by thermal treatment under H2 yi...
Encapsulation of metal nanoparticles is a leading technique used to inhibit the main deactivation me...