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[HTML][HTML] Catalytic CO2 conversion to C1 value-added products: Review on latest catalytic and process developments
With the increase in CO 2 emissions in the last decades, CO 2 capture and storage and CO
2 capture and utilization technologies have been interesting topics in literature and industry …
2 capture and utilization technologies have been interesting topics in literature and industry …
Recent advances on CO2 reduction reactions using single-atom catalysts
X Yan, C Duan, S Yu, B Dai, C Sun, H Chu - Renewable and Sustainable …, 2024 - Elsevier
The reduction processes can transform CO 2 into value-added products, which have shown
great potential for CO 2 utilization and global warming mitigation. The single-atom catalysts …
great potential for CO 2 utilization and global warming mitigation. The single-atom catalysts …
Flame-made ternary Pd-In2O3-ZrO2 catalyst with enhanced oxygen vacancy generation for CO2 hydrogenation to methanol
Palladium promotion and deposition on monoclinic zirconia are effective strategies to boost
the performance of bulk In2O3 in CO2-to-methanol and could unlock superior reactivity if …
the performance of bulk In2O3 in CO2-to-methanol and could unlock superior reactivity if …
Atomic Structural Origin of the High Methanol Selectivity over In2O3–Metal Interfaces: Metal–Support Interactions and the Formation of a InOx Overlayer in Ru/In2O3 Catalysts …
CO2 hydrogenation to methanol is of great environmental and economic interest due to its
potential to reduce carbon emissions and produce valuable chemicals in one single …
potential to reduce carbon emissions and produce valuable chemicals in one single …
Confinement-Induced Indium Oxide Nanolayers Formed on Oxide Support for Enhanced CO2 Hydrogenation Reaction
J Wang, R Li, G Zhang, C Dong, Y Fan… - Journal of the …, 2024 - ACS Publications
An enclosed nanospace often shows a significant confinement effect on chemistry within its
inner cavity, while whether an open space can have this effect remains elusive. Here, we …
inner cavity, while whether an open space can have this effect remains elusive. Here, we …
The Promoting Role of Ni on In2O3 for CO2 Hydrogenation to Methanol
Ni-promoted indium oxide (In2O3) is a promising catalyst for the selective hydrogenation of
CO2 to CH3OH, but the nature of the active Ni sites remains unknown. By employing density …
CO2 to CH3OH, but the nature of the active Ni sites remains unknown. By employing density …
Highly active Pt/In2O3-ZrO2 catalyst for CO2 hydrogenation to methanol with enhanced CO tolerance: The effects of ZrO2
The supported Pt catalyst is normally not active for CO 2 hydrogenation to methanol at the
presence of CO. Herein, ZrO 2 is added into Pt/In 2 O 3 for CO 2 hydrogenation to methanol …
presence of CO. Herein, ZrO 2 is added into Pt/In 2 O 3 for CO 2 hydrogenation to methanol …
CO2 Hydrogenation to Methanol on Indium Oxide-Supported Rhenium Catalysts: The Effects of Size
In this work, CO2 hydrogenation over In2O3-supported rhenium (Re) catalysts was found to
be highly size-dependent. When the Re loading was less than 1 wt%, the strong interaction …
be highly size-dependent. When the Re loading was less than 1 wt%, the strong interaction …
Atomic Pd-promoted ZnZrOx solid solution catalyst for CO2 hydrogenation to methanol
The development of efficient CO 2 conversion catalysts is a long-lasting desire. Herein, we
introduce an atomic Pd-promoted ZnZrO x solid solution catalyst (Pd-ZnZrO x), which shows …
introduce an atomic Pd-promoted ZnZrO x solid solution catalyst (Pd-ZnZrO x), which shows …
Design and synthesis of thermally stable single atom catalysts for thermochemical CO2 reduction
The continuous and excessive emission of CO 2 into the atmosphere presents a pressing
challenge for global sustainable development. In response, researchers have been devoting …
challenge for global sustainable development. In response, researchers have been devoting …