Metal promotion is broadly applied to enhance the performance of heterogeneous catalysts to fulfill industrial requirements. Still, generating and quantifying the effect of the promoter speciation that exclusively introduces desired properties and ensures proximity to or accommodation within the active site and durability upon reaction is very challenging. Recently, In2O3 was discovered as a highly selective and stable catalyst for green methanol production from CO2. Activity boosting by promotion with palladium, an efficient H2-splitter, was partially successful since palladium nanoparticles mediate the parasitic reverse water–gas shift reaction, reducing selectivity, and sinter or alloy with indium, limiting metal utilization and robustne...
Abstract We report on the use of In as an effective H2 production promoter in a Cu/SiO2 catalyst for...
Direct hydrogenation of CO2 to methanol could offer significant environmental benefits, if efficient...
Indium oxide has emerged as a highly effective catalyst for methanol synthesis by direct CO2 hydroge...
CO2 valorization into chemicals and fuels is a key area in current academic and industrial research,...
In2O3 has recently emerged as a promising catalyst for methanol synthesis from CO2. In this work, we...
In recent years, Pd-In2O3 catalysts attracted the research interest for their high selectivity in th...
Metal promoted indium oxide (In2O3) catalysts are promising materials for CO2 hydrogenation to produ...
Indium oxide (In2O3) and In2O3-supported catalysts for CO2 hydrogenation to methanol have attracted ...
Synthesis of methanol with high selectivity and productivity through hydrogenation of CO2 is highly ...
Ni-promoted indium oxide (In2O3) is a promising catalyst for the selective hydrogenation of CO2 to C...
The direct hydrogenation of CO2 to methanol using green hydrogen is regarded as a potential techn...
Palladium promotion and deposition on monoclinic zirconia are effective strategies to boost the perf...
Ternary Pd-In₂O₃/ZrO₂ catalysts exhibit technological potential for CO₂-based methanol synthesis, bu...
Indium oxide (In2O3) is a promising catalyst for selective CH3OH synthesis from CO2 but displays ins...
Indium oxide (In2O3) is a promising catalyst for selective CH3OH synthesis from CO2but displays insu...
Abstract We report on the use of In as an effective H2 production promoter in a Cu/SiO2 catalyst for...
Direct hydrogenation of CO2 to methanol could offer significant environmental benefits, if efficient...
Indium oxide has emerged as a highly effective catalyst for methanol synthesis by direct CO2 hydroge...
CO2 valorization into chemicals and fuels is a key area in current academic and industrial research,...
In2O3 has recently emerged as a promising catalyst for methanol synthesis from CO2. In this work, we...
In recent years, Pd-In2O3 catalysts attracted the research interest for their high selectivity in th...
Metal promoted indium oxide (In2O3) catalysts are promising materials for CO2 hydrogenation to produ...
Indium oxide (In2O3) and In2O3-supported catalysts for CO2 hydrogenation to methanol have attracted ...
Synthesis of methanol with high selectivity and productivity through hydrogenation of CO2 is highly ...
Ni-promoted indium oxide (In2O3) is a promising catalyst for the selective hydrogenation of CO2 to C...
The direct hydrogenation of CO2 to methanol using green hydrogen is regarded as a potential techn...
Palladium promotion and deposition on monoclinic zirconia are effective strategies to boost the perf...
Ternary Pd-In₂O₃/ZrO₂ catalysts exhibit technological potential for CO₂-based methanol synthesis, bu...
Indium oxide (In2O3) is a promising catalyst for selective CH3OH synthesis from CO2 but displays ins...
Indium oxide (In2O3) is a promising catalyst for selective CH3OH synthesis from CO2but displays insu...
Abstract We report on the use of In as an effective H2 production promoter in a Cu/SiO2 catalyst for...
Direct hydrogenation of CO2 to methanol could offer significant environmental benefits, if efficient...
Indium oxide has emerged as a highly effective catalyst for methanol synthesis by direct CO2 hydroge...