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[HTML][HTML] Recent progress in syngas production via catalytic CO2 hydrogenation reaction
Synthesis gas production through the catalytic reverse water-gas shift (RWGS) reaction is an
attractive option for the conversion of CO 2 to fuels. Many metal-based catalysts have been …
attractive option for the conversion of CO 2 to fuels. Many metal-based catalysts have been …
[HTML][HTML] Methanol synthesis from CO2: A mechanistic overview
Currently, energy demand is growing swiftly with global economic growth. The combustion
of fossil fuels is one of the major environmental threats due to the release of CO 2 into the …
of fossil fuels is one of the major environmental threats due to the release of CO 2 into the …
Bixbyite-type Ln2O3 as promoters of metallic Ni for alkaline electrocatalytic hydrogen evolution
H Sun, Z Yan, C Tian, C Li, X Feng, R Huang… - Nature …, 2022 - nature.com
The active-site density, intrinsic activity, and durability of Ni-based catalysts are critical to
their application in industrial alkaline water electrolysis. This work develops a kind of …
their application in industrial alkaline water electrolysis. This work develops a kind of …
Light-Reinforced Key Intermediate for Anticoking To Boost Highly Durable Methane Dry Reforming over Single Atom Ni Active Sites on CeO2
Dry reforming of methane (DRM) has been investigated for more than a century; the
paramount stumbling block in its industrial application is the inevitable sintering of catalysts …
paramount stumbling block in its industrial application is the inevitable sintering of catalysts …
Efficient photoelectrocatalytic CO 2 reduction to CH 3 OH via porous gC 3 N 4 nanosheets modified with cobalt phthalocyanine in ionic liquids
P Li, Y Lin, Z Qi, D Yan - Journal of Materials Chemistry A, 2023 - pubs.rsc.org
Photocatalytic CO2 reduction into fuels is desirable; however, realizing efficient CnH2n+
1OH (n= 1, 2) synthesis that involves electron-coupled proton transfer alongside C–C bond …
1OH (n= 1, 2) synthesis that involves electron-coupled proton transfer alongside C–C bond …
Synergetic Interaction between Single-Atom Cu and Ga2O3 Enhances CO2 Hydrogenation to Methanol over CuGaZrOx
A Cu-based catalyst has prospects for practical use in selective hydrogenation of CO2 to
methanol. But the catalyst's structural complexity renders the elucidation of the nature of …
methanol. But the catalyst's structural complexity renders the elucidation of the nature of …
Al Promotion of In2O3 for CO2 Hydrogenation to Methanol
In2O3 is a promising catalyst for the hydrogenation of CO2 to methanol, relevant to
renewable energy storage in chemicals. Herein, we investigated the promoting role of Al on …
renewable energy storage in chemicals. Herein, we investigated the promoting role of Al on …
Flame Synthesis of Cu/ZnO–CeO2 Catalysts: Synergistic Metal–Support Interactions Promote CH3OH Selectivity in CO2 Hydrogenation
The hydrogenation of CO2 to CH3OH is an important reaction for future renewable energy
scenarios. Herein, we compare Cu/ZnO, Cu/CeO2, and Cu/ZnO–CeO2 catalysts prepared …
scenarios. Herein, we compare Cu/ZnO, Cu/CeO2, and Cu/ZnO–CeO2 catalysts prepared …
Shifting CO2 hydrogenation from producing CO to CH3OH by engineering defect structures of Cu/ZrO2 and Cu/ZnO catalysts
The catalytic performance of supported Cu catalysts in CO 2 hydrogenation is structurally
dependent; hence, regulating the metal-support interactions, often driven by the redox …
dependent; hence, regulating the metal-support interactions, often driven by the redox …
Mechanism and Nature of Active Sites for Methanol Synthesis from CO/CO2 on Cu/CeO2
CO2 hydrogenation to methanol can play an important role in meeting the sustainability
goals of the chemical industry. In this study, we investigated in detail the role of the Cu …
goals of the chemical industry. In this study, we investigated in detail the role of the Cu …