2023
DOI: 10.1016/j.sajce.2023.01.002
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Recent trend of metal promoter role for CO2 hydrogenation to C1 and C2+ products

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Cited by 7 publications
(4 citation statements)
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“…To improve both the activity and selectivity of the catalysts, promoters are often employed, which essentially fine-tune the intermediates’ adsorption energies to reduce kinetic barriers and facilitate effective catalytic pathways. 58…”
Section: Fundamentals Of Co2 Hydrogenation To Methanolmentioning
confidence: 99%
See 1 more Smart Citation
“…To improve both the activity and selectivity of the catalysts, promoters are often employed, which essentially fine-tune the intermediates’ adsorption energies to reduce kinetic barriers and facilitate effective catalytic pathways. 58…”
Section: Fundamentals Of Co2 Hydrogenation To Methanolmentioning
confidence: 99%
“…To improve both the activity and selectivity of the catalysts, promoters are often employed, which essentially fine-tune the intermediates' adsorption energies to reduce kinetic barriers and facilitate effective catalytic pathways. 58 Fig. 2 Influence of pressure and temperature on (a) equilibrium conversion of CO 2 and (b) selectivity toward methanol at equilibrium.…”
Section: Co 2 To Methanol Reduction Mechanismmentioning
confidence: 99%
“…The increase in anthropogenic carbon dioxide (CO 2 ) emission, which results from heavy fossil fuel usage in modern social developments, has caused serious environmental problems such as the greenhouse effect, ocean acidification, and extreme climate. , Researchers have recognized the conversion of CO 2 into high value-added products as a promising approach to address these problems, and have made remarkable progress in the hydrogenation of CO 2 to synthesize small molecules such as CO, CH 4 , and CH 3 OH as chemical feedstocks. …”
Section: Introductionmentioning
confidence: 99%
“…[5] Additionally, ZIF-8 structure analogues built from Li/Al, [6] Fe, [7] Mn, [8] and Mg [9] tetrahedra are known, but are unstable in air or humid conditions. Ni-based compounds have gained popularity as heterogeneous catalysts for various applications, including CO 2 dry reforming, [10] olefin oligomerization, [11,12] selective deoxygenation for biofuel production, [13] and hydrogenation, [14] as they present a more affordable alternative to Pd or Pt-based catalysts. Moreover, nickel compounds play an important role in energy storage and conversion systems like electrochemical capacitors, [15] batteries, [16] and solar cells.…”
Section: Introductionmentioning
confidence: 99%