Publication | Closed Access
Carbon nanotube-supported Cu-based catalysts for oxidative carbonylation of methanol to methyl carbonate: effect of nanotube pore size
36
Citations
48
References
2020
Year
Chemical EngineeringCarbonizationEngineeringCatalytic ApplicationPorous CarbonMethanolCatalytic SynthesisInner DiameterOrganic ChemistryNanoheterogeneous CatalysisCatalysisChemistryCatalyst PreparationCatalytic ProcessCu SpeciesNanotube Pore SizeOxidative Carbonylation
The inner diameter of CNTs significantly affected the location, dispersion, autoreduction and stability of Cu species and thus the catalytic activity and stability for oxidative carbonylation of methanol to dimethyl carbonate.
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