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- W4283710130 endingPage "226" @default.
- W4283710130 startingPage "210" @default.
- W4283710130 abstract "Structure–activity relationships are essential in the understanding of reaction pathways and mechanisms in electrocatalysis. Both structural characteristics of the electrodes, such as surface reconstructions and dynamic morphology changes under operating conditions, and of the electrolytes, represented by excess charges and water in the electrical double layer, have to be intensely studied to gain insights that are deep enough to enable the development of electrocatalytic systems with enhanced performance. Our review describes copper's solid/liquid interface properties and reactivity with focus on the surface structure and its evolution under applied potentials. It provides an overview of structure–activity relations known for copper electrodes for the most relevant electrocatalytic reactions, being the electroreduction of CO2, the electrooxidation of CO, and the evolution of hydrogen." @default.
- W4283710130 created "2022-06-30" @default.
- W4283710130 creator A5021025452 @default.
- W4283710130 creator A5043597723 @default.
- W4283710130 date "2024-01-01" @default.
- W4283710130 modified "2023-10-14" @default.
- W4283710130 title "Structure–activity relations of Cu-based single-crystal model electrocatalysts" @default.
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- W4283710130 doi "https://doi.org/10.1016/b978-0-323-85669-0.00006-4" @default.
- W4283710130 hasPublicationYear "2024" @default.
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