CO2 valorization into chemicals and fuels is a key area in current academic and industrial research, with thermocatalytic hydrogenation to methanol comprising one of the most advanced routes. Life-cycle analysis coupled to the framework of planetary boundaries has recently confirmed the sustainability of this process in absolute terms, emphasizing the need for cheaper CO2 and renewable H2 and for a catalytic system embracing high activity, selectivity, and durability to meet economic requirements. Herein, our research efforts aimed to gather atomic-level understanding of electronic and geometric properties of active sites in breakthrough In2O3-based catalytic systems guiding their development are reviewed. In-depth mechanistic elucidation...
Metal promoted indium oxide (In2O3) catalysts are promising materials for CO2 hydrogenation to produ...
Ternary Pd-In₂O₃/ZrO₂ catalysts exhibit technological potential for CO₂-based methanol synthesis, bu...
In2O3 is a promising catalyst for the hydrogenation of CO2 to methanol, relevant to renewable energy...
Metal promotion is broadly applied to enhance the performance of heterogeneous catalysts to fulfill ...
Synthesis of methanol with high selectivity and productivity through hydrogenation of CO2 is highly ...
Methanol synthesis through CO2 hydrogenation reaction seems to be a promising approach to mitigate t...
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...
Indium oxide (In2O3) and In2O3-supported catalysts for CO2 hydrogenation to methanol have attracted ...
Indium oxide has emerged as a highly effective catalyst for methanol synthesis by direct CO2 hydroge...
The direct hydrogenation of CO2 to methanol using green hydrogen is regarded as a potential techn...
The consequences of the anthropogenic carbon dioxide (CO2) released into the atmosphere have been fo...
The formation and nature of surface indium species in zirconia-supported catalysts for the hydrogena...
Palladium promotion and deposition on monoclinic zirconia are effective strategies to boost the perf...
In recent years, In2O3 based catalysts showed promising results in the hydrogenation of CO2 to metha...
Metal promoted indium oxide (In2O3) catalysts are promising materials for CO2 hydrogenation to produ...
Ternary Pd-In₂O₃/ZrO₂ catalysts exhibit technological potential for CO₂-based methanol synthesis, bu...
In2O3 is a promising catalyst for the hydrogenation of CO2 to methanol, relevant to renewable energy...
Metal promotion is broadly applied to enhance the performance of heterogeneous catalysts to fulfill ...
Synthesis of methanol with high selectivity and productivity through hydrogenation of CO2 is highly ...
Methanol synthesis through CO2 hydrogenation reaction seems to be a promising approach to mitigate t...
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...
Indium oxide (In2O3) and In2O3-supported catalysts for CO2 hydrogenation to methanol have attracted ...
Indium oxide has emerged as a highly effective catalyst for methanol synthesis by direct CO2 hydroge...
The direct hydrogenation of CO2 to methanol using green hydrogen is regarded as a potential techn...
The consequences of the anthropogenic carbon dioxide (CO2) released into the atmosphere have been fo...
The formation and nature of surface indium species in zirconia-supported catalysts for the hydrogena...
Palladium promotion and deposition on monoclinic zirconia are effective strategies to boost the perf...
In recent years, In2O3 based catalysts showed promising results in the hydrogenation of CO2 to metha...
Metal promoted indium oxide (In2O3) catalysts are promising materials for CO2 hydrogenation to produ...
Ternary Pd-In₂O₃/ZrO₂ catalysts exhibit technological potential for CO₂-based methanol synthesis, bu...
In2O3 is a promising catalyst for the hydrogenation of CO2 to methanol, relevant to renewable energy...