Confined Growth of Silver-Copper Janus Nanostructures with {100} Facets for Highly Selective Tandem Electrocatalytic Carbon Dioxide Reduction.
basic_science · Level V
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- Record sourced from PubMed, PMID 35275439.
- Also identified by DOI 10.1002/adma.202110607.
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Abstract
Electrocatalytic carbon dioxide reduction reaction (CO<sub>2</sub> RR) holds significant potential to promote carbon neutrality. However, the selectivity toward multicarbon products in CO<sub>2</sub> RR is still too low to meet practical applications. Here the authors report the delicate synthesis of three kinds of Ag-Cu Janus nanostructures with {100} facets (JNS-100) for highly selective tandem electrocatalytic reduction of CO<sub>2</sub> to multicarbon products. By controlling the surfactant and reduction kinetics of Cu precursor, the confined growth of Cu with {100} facets on one of the six equal faces of Ag nanocubes is realized. Compared with Cu nanocubes, Ag<sub>65</sub> -Cu<sub>35</sub> JNS-100 demonstrates much superior selectivity for both ethylene and multicarbon products in CO<sub>2</sub> RR at less negative potentials. Density functional theory calculations reveal that the compensating electronic structure and carbon monoxide spillover in Ag<sub>65</sub> -Cu<sub>35</sub> JNS-100 contribute to the enhanced CO<sub>2</sub> RR performance. This study provides an effective strategy to design advanced tandem catalysts toward the extensive application of CO<sub>2</sub> RR.