Publication | Closed Access
Pressure-Dependent CO<sub>2</sub> Electroreduction to Methane over Asymmetric Cu–N<sub>2</sub> Single-Atom Sites
76
Citations
41
References
2024
Year
Single-atom catalysts (SACs) with unitary active sites hold great promise for realizing high selectivity toward a single product in the CO<sub>2</sub> electroreduction reaction (CO<sub>2</sub>RR). However, achieving high Faradaic efficiency (FE) of multielectron products like methane on SACs is still challenging. Herein, we report a pressure-regulating strategy that achieves 83.5 ± 4% FE for the CO<sub>2</sub>-to-CH<sub>4</sub> conversion on the asymmetric Cu-N<sub>2</sub> sites, representing one of the best CO<sub>2</sub>-to-CH<sub>4</sub> performances. Elevated CO<sub>2</sub> pressure was demonstrated as an efficient way to inhibit the hydrogen evolution reaction via promoting the competing adsorption of reactant CO<sub>2</sub>, regardless of the nature of the active sites. Meanwhile, the asymmetric Cu-N<sub>2</sub> structure could endow the Cu sites with stronger electronic coupling with *CO, thus suppressing the desorption of *CO and facilitating the following hydrogenation of *CO to *CHO. This work provides a synergetic strategy of the pressure-induced reaction environment regulating and the electronic structure modulating for selective CO<sub>2</sub>RR toward targeted products.
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