Tuning Reaction Pathways of Electrochemical Conversion of CO<sub>2</sub> by Growing Pd Shells on Ag Nanocubes.
basic_science · Level V
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- Record sourced from PubMed, PMID 35605250.
- Also identified by DOI 10.1021/acs.nanolett.2c01667.
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Abstract
The electrochemical carbon dioxide reduction reaction (CO<sub>2</sub>RR) has been studied on Ag, Pd, Ag@Pd<sub>1-2L</sub> nanocubes using a combination of <i>in situ</i> characterization and density functional theory calculations. By manipulating the deposition and diffusion rates of Pd atoms on Ag nanocubes, Ag@Pd core-shell nanocubes with a shell thickness of 1-2 atomic layers have been successfully synthesized for CO<sub>2</sub>RR. Pd nanocubes produce CO with high selectivity due to the transformation of Pd to Pd hydride (PdH) during CO<sub>2</sub>RR. In contrast, PdH formation becomes more difficult in Ag@Pd<sub>1-2L</sub> core-shell nanocubes, which inhibits CO production from the *HOCO intermediate and thus tunes the reaction pathway toward HCOOH. Ag nanocubes exhibit high selectivity toward H<sub>2</sub>, and there is no phase transition during CO<sub>2</sub>RR. The results demonstrate that the CO<sub>2</sub>RR reaction pathways can be manipulated through engineering the surface structure of Pd-based catalysts by allowing or preventing the formation of PdH.