Strategies to Modulate the Copper Oxidation State Toward Selective C<sub>2+</sub> Production in the Electrochemical CO<sub>2</sub> Reduction Reaction.
review · Level V
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- Record sourced from PubMed, PMID 38346313.
- Also identified by DOI 10.1002/adma.202313028.
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Abstract
The electrochemical reduction of CO<sub>2</sub> to form value-added chemicals receives considerable attention in recent years. Copper (Cu) is recognized as the only element capable of electro-reducing CO<sub>2</sub> into hydrocarbons with two or more carbon atoms (C<sub>2+</sub>), but the low product selectivity of the Cu-based catalyst remains a major technological challenge to overcome. Therefore, identification of the structural features of Cu-based catalysts is of great importance for the highly selective production of C<sub>2+</sub> products (ethylene, ethanol, n-propanol, etc.), and the oxidation state of Cu species in the catalysts is found critical to the catalyst performance. This review introduces recent efforts to fine-tune the oxidation state of Cu to increase carbon capture and produce specific C<sub>2+</sub> compounds, with the intention of greatly expediting the advance in the catalyst designs. It also points to the remaining challenges and fruitful research directions for the development of Cu-based catalysts that can shape the practical CO<sub>2</sub> reduction technology.