articleTop 10% cited
The importance of surface morphology in controlling the selectivity of polycrystalline copper for CO2 electroreduction
Physical Chemistry Chemical Physics · 2011 · Vol. 14(1) · pp. 76–81
Wei Tang(Technical University of Denmark)Andrew A. Peterson(Stanford University)Ana Sofía Varela(Technical University of Denmark)Zarko P. Jovanov(Technical University of Denmark)Lone Bech(Technical University of Denmark)William J. Durand(Stanford University)Søren Dahl(Technical University of Denmark)Jens K. Nørskov(Stanford University)Ib Chorkendorff✉(Technical University of Denmark)
Abstract
This communication examines the effect of the surface morphology of polycrystalline copper on electroreduction of CO2. We find that a copper nanoparticle covered electrode shows better selectivity towards hydrocarbons compared with the two other studied surfaces, an electropolished copper electrode and an argon sputtered copper electrode. Density functional theory calculations provide insight into the surface morphology effect.
CO2 Reduction Techniques and CatalystsIonic liquids properties and applicationsAdvanced Thermoelectric Materials and DevicesCopperElectrodeCrystalliteSelectivityMorphology (biology)Materials scienceNanoparticleArgonDensity functional theoryCurrent density
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References
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A new mechanism for the selectivity to C1 and C2 species in the electrochemical reduction of carbon dioxide on copper electrodes
Chemical Science · 2011 · 936 citations
Structure effects on the energetics of the electrochemical reduction of CO2 by copper surfaces
Surface Science · 2011 · 540 citations
How copper catalyzes the electroreduction of carbon dioxide into hydrocarbon fuels
Energy & Environmental Science · 2010 · 3,624 citations
A review of the aqueous electrochemical reduction of CO2 to hydrocarbons at copper
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